ENGINEERING RESEARCH PAPERS

battery research papers 2015 IEEE PAPER




NON-ISOTHERMAL MODELING AND SIMULATION FOR A SOLUBLE-LEAD ACID FLOW BATTERY
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ABSTRACT Non-isothermal two-dimensional transient model for a soluble lead-acid flow battery is developed, including the negative electrode, positive electrode and the flow space between them. The model based on a comprehensive description of mass, charge, energy

Numerical Study of Composite Electrode's Particle Size Effect on the Electrochemical and Heat Generation of a Li-ion Battery
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ABSTRACT Rechargeable lithium ion batteries (LIBs) are now playing crucial roles in power supply and energy storage systems. Among all types of rechargeable batteries available nowadays, LIBs are one of the most important ways to store energy because of their high

Fabrication and Electrochemical Behavior of Monoclinic CuO and CuO/Graphite Composite Nanoparticles as Cathode in an Alkaline Zn-CuO Battery
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Abstract Electrochemical properties of various rock-shaped-CuO/graphite (G) composites and monoclinic structure CuO nanoparticles as the cathode versus a zinc plate as the anode in a 4M NaOH electrolyte were elucidated by electrochemical impedance spectroscopy (

Single-phase grid-connected LiFePO 4 battery-supercapacitor hybrid energy storage system with interleaved boost inverter
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Abstract:AC line integrated energy storage systems are attractive as they increase the system efficiency by reducing the number of required power processing stages. In this paper, operation of a recently proposed battery-supercapacitor hybrid energy storage

ECONOMIC STUDY OF HYBRID PV-BATTERY-DIESEL SYSTEM FOR HOTEL BACKUP GENERATOR
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ABSTRACT The power outage causes economic and environmental problems in society, especially for hotel business that must have additional cost to provide a backup generator so that the electrical energy is always available. This condition is getting worse due to the

Negative Lead-Acid Battery Electrodes Doped with Glass Fibres
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Negative lead-acid battery electrodes doped with microscopic glass fibres show similar properties during accelerated partial state of charge cycling as those doped with carbon or titanium dioxide, including a long cycle life of up to 84,000 cycles. The optimum amount of

Synthesis of Spinel ZnMn2O4 Nanoparticle Assemblies Via a Flower-like ZnO Precursor Route for Lithium Battery Anodes with Enhanced Electrochemical
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In this work, the spinel ZnMn2O4 nanoparticle assemblies have been successfully prepared using a flower-like ZnO as a precursor via a facile a water bath method. The method is a low- cost, simple and large-scale production. The electrochemical performance as Li-ion

Optimal Multi-Objective Allocation and Scheduling of Multiple Battery Energy Storages for Reducing Daily Marginal Losses
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Abstract:Recently Esstalion Technologies, Inc. has been established by Hydro-Quebec and Sony Corporation. The new company will research and develop reliable, highly safe, olivinetype lithium-ion iron phosphate rechargeable batteries for use within power

Control System of Battery Storage to Eliminate the Power Variation According to the Electricity Prediction
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Abstract:Rapid variations of the output power from photovoltaic power plants can have some significant side effects on the quality of electricity, such as the voltage variation, switching of tap changers, etc. In the other case, these variations also make the difference

Processing gold-bearing quartz ore in the early twentieth century: an illustrated case history from the Snowy River battery, Waiuta, New Zealand
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Abstract The Snowy River battery near Waiuta, New Zealand, processed gold-bearing quartz ore from the nearby Blackwater mine between 1908 and 1938. Incorporating the latest technology when built in 1908, it was a typical, early 20th century processing plant.

Electrification of transport logistic vehicles: A techno-economic assessment of battery and fuel cell electric transporter
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Abstract In order to minimize oil dependency and the negative environmental impacts as described within the fifth assessment report of the Intergovernmental Panel on Climate Change (IPCC), emissions of greenhouse gases (GHG) from all sectors of the global

LiF-MO (M= Co, Fe, Ni) Nanocomposite Thin Film as Anode Materials for Lithium-ion Battery
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Abstract To investigate the electrochemical performance of MO (M= Co, Fe, Ni) nanostructures on lithium insertion and extraction, size-controlled LiF-MO nanocomposite thin-film electrodes, consisting of metallic M and M oxide (MO) nanoparticles in an

FLEXIBLE SOLID-STATE LI–ION BATTERY USING GE THIN FILM ANODE AND LICOO2 CATHODE
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Abstract:Flexible and solid–state Li-ion bat-teries (LIBs) can offer flexibility, lightweight and easy portability in large-scale energy storage, with significantly higher power and long cycle life. The anode is a crucial component affecting the performance of LIBs. Here, we

Effect of Compression on Negative Lead-Acid Battery Electrodes Doped with Glass Fibres
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Lead-acid battery with negative electrodes doped with microscopic glass fibres are comparable with those doped with carbon or titanium dioxide during accelerated PSoC cycling and reach a long cycle life. The performance of these electrodes can be even

IRON CONTAINING LAYERED OXIDES FOR SODIUM ION BATTERY POSITIVE ELECTRODES
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There has been increased interest in layered oxides containing Fe for Na-ion cathode materials [10]. NaFeO2 has two polymorphs. I-NaFeO2 has the layered rock salt structure (O3-type) and is the prototype structure for the O3 type layered metal oxide phases. -

Two-point State-of-Charge Determination in Lithium-ion Battery Packs
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Two-point State of Charge Determination In Lithium-Ion Battery Packs Same OCV, Same Qr, Anakonu approach: Understand SC/Pack correlation Ideal battery pack – Example of a 3S1P assembly Cell #1 Cell #2

Study on Nitrogen-Doped Carbon Nanotubes for Vanadium Redox Flow Battery Application
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Nitrogen doped carbon nanotubes (N-CNTs) have been synthesized on carbon felt (N- CNT/CF) with chemical vapor deposition method by utilizing decomposition of melamine in the presence of ferrocene. The as-prepared N-CNT/CF composite was investigated as

The importance of observation of structural changes of lead acid battery active mass in special applications in the mining industry.
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The process of charging and discharging lead-acid accumulator has been described in many publications. The aim of this article is to supplement known information about a series of images and analysis that will accurately show progressive changes in the structure of (RESs) and unpredictable load demands are two major challenges in providing uninterrupted power supply from a smart grid. One way to address these challenges is to use storage devices that can store surplus energy from RESs and discharge the energy

Isogeometric Analysis of Mechanically Coupled Phase Segregation in Li-Ion Battery Electrode Particles
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In pursuit of Lithium-ion batteries with larger capacity, electrode materials such as Silicon, Tin-Oxide have be introduced. However, those electrodes experience irreversible mechanical degradation even after limited charging/discharging cycles due to phase

Numerical Modeling of Submodule Heat Transfer With Phase Change Material for Thermal Management of Electric Vehicle Battery Packs
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In this paper, passive thermal management of an electric vehicle (EV) battery pack with phase change material (PCM) is studied numerically. When the temperature in the cells increases, and consequently in the submodule also, the heat is absorbed through melting

Erratum: Performance Enhancement of 4.8 V Li1. 2Mn0. 525Ni0. 175Co0. 1O2 Battery Cathode Using Fluorinated Linear Carbonate as a High-Voltage Additive [J.
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Journal of The Electrochemical Society, 162 (3) X5-X5 (2015) 0013-4651/2015/162(3)/X5/ 1/$31.00 The Electrochemical Society Erratum: Performance Enhancement of 4.8 V Li1.2Mn0.525Ni0.175Co0.1O2 Battery Cathode Using Fluorinated Linear Carbonate as a

Modification of Lithium Ion Battery Separators by Electron Beam Radiation Induced Grafting of Glycidyl Methacrylate onto Porous PP Film
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In order to modify porous polypropylene (PP) film which is used as separator of lithium ion battery, monomers glycidyl methacrylate (GMA) with epoxy groups were grafted onto porous PP film by electron beam induced pre-irradiation technology. Firstly, the influences of

Porous Co3Mo3N Nanorods as an Effective Electrocatalyst for Li-O2 Battery
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Porous Co3Mo3N nanorods were prepared by hydrothermal process combined with ammonia annealing and applied as catalyst in Li-O2 battery cell. The battery with the porous Co3Mo3N nanorods showed a higher initial discharge capacity of 7902.8 mAh/gc at

Phase field modeling of Li-insertion kinetics in single LiFePO4- nano-particles for rechargeable Li-ion battery application
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Page 1. Phase field modeling of Li-insertion kinetics in single LiFePO4 nano-particles for rechargeable Li-ion battery application M. Fleck, H. Federmann, P. Amendt, E. Pogorelov J. Kundin and H. Emmerich 17.03.2015 DPG-Springmeeting Berlin Page 2. Overview

Solar Architect-Intelligent Recommendation Engine for Solar Energy Battery Use
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ABSTRACT Few years ago, a 10 Gigabyte of data was considered to be a large amount of data. However, with the enhancement of ease of use of internet and social networking, data collection boosted to more than a terabyte of data in a day. With this increase in the data

Computational electro-chemo-mechanics of lithium-ion battery electrodes at finite strains
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Abstract A finite strain theory for electro-chemo-mechanics of lithium ion battery electrodes along with a monolithic and unconditionally stable finite element algorithm for the solution of the resulting equation systems is proposed. The chemical concentration and the

Enhancing Performance of a Lithium Ion Battery by Optimizing the Surface Properties of the Current Collector
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A thin uniform and compact oxide layer (COL) was synthesized a on an Al foil as a current collector for Li-ion battery cathode by an oxidation process using KMnO4 as an oxidant. The oxide composite mainly consists of manganese and aluminium oxides which were

Validation of a Cognitive Screening Battery to Predict Fitness-to-Drive in Individuals with Multiple Sclerosis: A Preliminary Report
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Summary: In a previous study, we identified five cognitive tests that together predicted the outcome of a comprehensive driving evaluation of 44 individuals with multiple sclerosis (age= 46±11 years, 84% females) with 91% accuracy, 70% sensitivity, and 97% specificity

Lithium-ion battery end-of-discharge time estimation and prognosis based on Bayesian algorithms and outer feedback correction loops: a comparative analysis
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ABSTRACT Battery energy systems are currently one of the most common power sources found in mobile electromechanical devices. In all these equipment, assuring the autonomy of the system requires to determine the battery state-of-charge (SOC) and predicting the

Isogeometric Analysis of size-dependent behavior of Li-ion battery electrode particles
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Lithium-ion batteries find wide application as power source for mobile devices such as cellphones and tablet PCs. Unfortunately, they suffer from gradual capacity fade over their lifetime. Besides electrochemical effects, mechanical degradation has been identified as

Energy storage safety: Responsible installation, use and disposal of domestic and small commercial battery systems
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Battery installations are already occurring in Australia. However, accreditation and training pathways are not yet well established. Hence, there is a lot of uncertainty within the market about the management of the safety and quality control systems for these installations.

A study of the effect of short-term relaxation on the EIS test technique for EV battery cells
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Investigation of the electrochemical processes within a Liion cell can be achieved by using electrochemical impedance spectroscopy (EIS). As each process has a different time constant or time domain or frequency of excitation [1, 2], EIS allows for the separation of

Battery charge control with an electro-thermal-aging coupling
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ABSTRACT Efficient and safe battery charge control is an important prerequisite for large- scale deployment of clean energy systems. This paper proposes an innovative approach to devising optimally health-conscious fast-safe charge protocols. A multiobjective optimal

A layered d-MnO2 nanoflake cathode with high zinc-storage capacities for eco-friendlybattery applications
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Page 1. Short communication A layered d-MnO2 nanoflake cathode with high zinc-storage capacities for eco-friendly battery applications This study reports the use of a layered-type birnessite d-MnO2 nano-flake cathode for eco-friendly zinc-ion battery (ZIB) applications.

Hollow Sphere c-In2O3 for Application in Lithium Ion Battery
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The hollow sphere c-In2O3 were synthesized via hydrothermal reaction. The crystal structure of the sample was collected and analyzed through X-ray diffractometry (XRD). The surface morphology and particle size of the sample were observed by scanning electron

Battery Optimization of Android Phones by Sensing the Phone Using Hidden Markov Model
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Abstract-The paper presents a novel framework that includes an inhomogeneous (time- variant) Hidden Markov Model (HMM) and learning from data concepts. The framework either recognizes or estimates user contextual inferences called'user states' within the

Effects of Battery Energy Storage System on the Operating Schedule of a Renewable Energy Based Tou Rate Industrial User under Competitive Environment
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ABSTRACT With increasing development of smart grid and restructuring of the power industry, the problem of operating schedule for a time-of-use (TOU) rate industrial customer may become a more important issue due to the inclusion of the variations in the TOU rate

Goods Distribution with Electric Vehicles: Battery Degradation and Behaviour Modeling
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Abstract. The use of electric vehicles for goods distribution opens up a wide range of research problems. Battery electric vehicles (BEVs) operate on batteries that have a limited life, as well as specific charging and discharging patterns which need to be considered in

Advanced battery management system design for SOC/SOH estimation for e-bikes applications
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Abstract: In this work, state of charge (SOC) and state of health (SOH) estimation algorithms for battery management system are proposed and compared. These algorithms are developed on a battery pack designed specifically for light electric vehicle (electric scooter

System configuration of vf control with solar PV generator operating at MPPT with a batterystorage System
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Abstract:Microgrid concept allows small distributed energy resources (DERs) to act in a coordinated manner to provide a necessary amount of active power and ancillary service when required. This system proposes an approach of coordinated and integrated control

Application of Grid-Level Battery Energy Storage System to Wind Power Fluctuation Smoothing
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Abstract:Fluctuations in the output power of large-scale wind farms can have a considerable influence on power quality and stability, leading to the risk of grid frequency deviation, particularly in isolated power system. Fluctuations in wind power can be

Preparation of ZnO Porous Nanostructures and Its Application in Cathode Material for Lithium Sulfur Battery
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ZnO porous nanostructures were prepared by a two-step method which is composed of hydrothermal process and heating treatment. S/ZnO composite materials were prepared by heat treatment a mixture of sulfur and ZnO porous nanostructures at 155. The crystal

Comparison of nonlinear filtering methods for estimating the state of charge of Li 4 Ti 5 O 12 lithium-ion battery
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Accurate state of charge (SoC) estimation is of great significance for the lithium-ion battery to ensure its safety operation and to prevent it from overcharging or overdischarging. To achieve reliable SoC estimation for Li4Ti5O12 lithium-ion battery cell, three filtering

Facile Synthesis of High-quality N-doped Graphene Anchored with Fe2O3 for Use As Lithium-ion Battery Anode Materials
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A hybrid material composed of nitrogen-doped graphene anchored with Fe2O3 was readily obtained by a facile and one-step hydrothermal method followed by assisting with microwave under mild conditions. Scanning electron microscopy and transmission

Model-Based Design and Integration of Large Li-ion Battery Systems
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Shorten time and cost for design of electric drive battery systems Integrate accomplishments of disparate battery modeling activities. Make them accessible as design tools for industry Led by Vehicle Technologies Office with support of US Army TARDEC

Dynamic Simulation of Grid Free Flywheel Battery Based Solar Power Source under Varying Loading Cycles
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Abstract: The cost of the solar energy has drastically dropped in the last decade but its capacity factor poses restrictions on its use. The power source designed uses the flywheel batteries which in turn reduces the overall cost of installation and the operating cost. The

The Cloud Terminal Online Monitoring System of UPS Battery Performance based on MSP430 MCU
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Abstract Aiming at some problems in the process of UPS battery real-time monitoring, on the basis of the cloud terminal technology is proposed in this paper, a new method of remote online monitoring, and based on MSP430 single chip microcomputer, combined with

Facile synthesis of Li1. 2Ni0. 13Co0. 13Mn0. 54O2 by a thermal decomposition of eutectic Li-Ni-Co-Mn acetate as lithium ion battery cathodes
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Lithium rich layered oxide Li1. 2Ni0. 13Co0. 13Mn0. 54O2 have been successfully prepared by a simple decomposition of eutectic Li-Ni-Co-Mn acetate without using any solvent or additive. The influences of calcination temperatures on the structures and electrochemical

Battery State Estimation for a Single Particle Model with Electrolyte Dynamics
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Abstract: This paper studies a state estimation scheme for a reduced electrochemical battery model, using voltage and current measurements. Real-time electrochemical state information enables highfidelity monitoring and high-performance operation in advanced

A novel design for lithium-ion nano-battery
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The major outcomes of this project include the miniaturized thin film battery architecture that can be fully fabricated under ambient condition. The lithium-ion nanobattery architecture has the thickness of 200nm and various dimensions from 400x400nm2 to 1.5 x1. 5cm2. The

Study on Cycle-Life Prediction Model of Lithium-Ion Battery for Electric Vehicles
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This paper proposes a novel method for rapid determination of battery cycle life. Based on the relationship between the battery capacity, Arrhenius formula, temperature accelerated stress and charge-discharge current accelerated stress, a fitting formula is obtained to

Flexible Two-in-one Micro Sensor for Integration in Vanadium Redox Flow Battery
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The important physical parameters inside the vanadium redox flow battery (VRFB) are difficult to be measured accurately. They have critical influence on the vanadium redox battery performance and life cycle. Due to the uniformity and expendable nature of

Battery Management System Design and Implementation of Intelligent Emergency Light Based on the Technology of Loose Capacitance and FSM
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Abstract This paper presents a design and implement method of battery management system about emergency light based on loose capacitance synchronous sampling measure technology and balanced technology. Through the real-time data acquisition, charge and

Detection of Hormone-Like and Genotoxic Activities in Indoor Dust from Taiwan Using aBattery of in Vitro Bioassays
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ABSTRACT Indoor dust serves as a potential sink for various synthetic chemicals used in our daily lives, while exposure to these anthropogenic contaminants via dust contact, ingestion, or inhalation may pose potential threats to human health. In this study, in vitro

Biochemical effects of lead exposure and toxicity on battery manufacturing workers of Western Maharashtra (India): with respect to liver and kidney function tests
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Abstract: Background: The battery recycling and manufacturing involves the use of metallic lead for making grids, bearing and solder. The process results in release of lead particles and lead oxide causing environmental pollution and severe lead poisoning. Aims and

Si/Mo/MWCNT Nanocomposites for Lithium Ion Battery Applications
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Among the various available storage technologies, lithium ion batteries (LIBs) currently represent the state-of-the-art technology in small rechargeable batteries, power sources for mobile communication devices, portable electronic devices, and electric vehicles, due to

Lead free high performance Piezoelectric nanogenerator and self power battery
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Environment friendly flexible and efficient piezoelectric nanogenerators (PENG) have gained a lot of interest for micro/nano systems, wearable electronics, implantable bioelectronics, and for various other biomedical applications. In this paper we proposed a

Design of a High Power Battery Based on an Analysis of Data Captured from a Commercial Hybrid Electric Vehicle Running at Operating-Mode Conditions
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The automotive industry requires electric vehicle battery systems to maintain specified performance for an 8 year life cycle. However, it has been shown for Li-ion batteries that the capacity loss after a 1 year operation is approximately 3%, and the power loss is

Effect of Temperature on the Aging rate of Li Ion Battery
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This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article's Creative Commons license, unless indicated otherwise in the credit line; if the material is not

Epitaxial growth of hyper-branched Cu/Cu2O/CuO core-shell nanowire heterostructures for lithium-ion battery
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ABSTRACT A scrupulous design of nano-architectures and smart hybridization of expected active materials can lead to more advanced properties. Here we engineered a novel hierarchical branching Cu/Cu2O/CuO hetero-nanostructure by combining a facile

reuptake inhibitor potentially ameliorates the chronic unpredictable stress induced comorbid depression and anxiety: A Behavioural based rodent test battery
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ABSTRACT Depression and anxiety tend to be the most prevalent conditions among the multitude of neurobehavioural disorders which cause distress in chronic stress condition. The objective of the present investigation was to examine the effect of DOV-216303 (a

Study on SOC Estimation of Power Battery Based on Kalman Filter Optimization Algorithm
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Abstract Power battery's remaining capacity is affected by many interior and exterior uncertainties during use. To achieve estimate of current remaining measurable battery power by using battery measurable parameter data, which has always been the core

Multi-objective optimization of hybrid PV/wind/diesel/battery systems for decentralized application by minimizing the levelized cost of energy and the CO2
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The main objective of this paper is to propose a methodology to design and optimize a stand- alone hybrid PV/wind/diesel/battery minimizing the Levelized Cost of Energy (LCE) and the CO2 emission using a Multi-Objectives Genetic Algorithm approach. The methodology

Resonant Tank Design Considerations and Implementation of a LLC Resonant Converter with a Wide Battery Voltage Range
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Abstract This paper illustrates resonant tank design considerations and the implementation of a LLC resonant converter with a wide battery voltage range based on the fundamental harmonic approximation (FHA) analysis. Unlike the conventional design at zero load, the

Preparation of SnO2 Nanoparticle and Performance as Lithium-ion Battery Anode
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Herein we report that SnO2 nanoparticle is successfully prepared by the hydrolysis of SnCl2 as sodium dodecyl benzene sulfonate (SDBS) is used as the surfactant. The structures and electrochemical performances are characterized by scanning electron microscope (SEM),

Single-Stage Power Conversion PV-Battery System by Using Fuzzy Logic Control (FLC)
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ABSTRACT The output power of PV module varies with solar irradiation; temperature; loads and it quickly and accurately tracks the sun. For photovoltaic (PV)-battery application, mostly for utility-scale PV-battery application a new converter ie Reconfigurable solar converter (

Inductively coupled modular battery system for electric vehicles
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Abstract: This study proposes two novel modularised battery systems capable of controlling the power of each module independently, and with inductive interface for convenient battery swapping. The proposed systems aid in overcoming the limitations such as unavailability

Adaptive mutation particle swarm optimized BP neural network in state-of-charge estimation of Li-ion battery for electric vehicles
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The state of charge (SOC) of Li-ion battery on electric vehicle (EV) is highly nonlinear. The randomly selected initial parameters of BP neural network can cause significant inaccuracy and long training time. In the study presented in this paper, an optimized BP neural

Rule-Based Energy Management Strategy Optimized Using PSO for Fuel Cell/Battery Electric Vehicle
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Abstract Compared with battery-based electric vehicles, multiple energy sources electric vehicles are one of the most promising technologies for urban transportation. Except that dynamic behavior, specific energy and specific power of each source makes their power

Treatment effectiveness in patients with schizophrenia as measured by the ASSESSbattery-first longitudinal data.
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SUMMARY Background: Effective pharmacological treatment with a favorable side-effect profile increases treatment adherence and is therefore very important for patients with schizophrenia. Psychiatrists need easy to use and reliable assessments instruments to

Silicon/Graphite/Carbon Nanotubes Composite as Anode for Lithium Ion Battery
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Silicon/graphite/carbon nanotubes (Si/G/CNTs) material was prepared by ball milling and annealing in a special condition. Each sample was characterized by XRD, SEM, and electrochemical testament. The results revealed that Si/G/CNTs exhibited an initial specific

A Novel Hybrid Energy Storage Strategy Based on Flywheel and Lead-acid Battery in Wind Power Generation System
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Abstract In this paper, based on expounding the basic structure and operating principle of the flywheel energy storage system, the maximum energy storage and energy efficiency of the flywheel batteries are analyzed. Research data shows that there is still a part of the

The Study of Operation Modes and Control Strategies of a Multidirectional MC for BatteryBased System
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To enhance the performance of stand-alone battery based system and to achieve the continuous power transmission, the behavior of multidirectional matrix converter (MDMC) has been analyzed in different operation modes. A systematic method interfacing a

Effects of Fibrous Nickel Additives on the Electrochemical Properties of LiFePO4 Cathode for Lithium-ion Battery
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In this paper, the effects of fibrous nickel (Ni) additives on the electrochemical performance of LiFePO4 as a lithium-ion battery cathode were investigated by a simple mixing process of LiFePO4 powders and porous nickel fibers. The microstructure and crystalline phase were

A Novel litchi-like Fe3O4/graphene Composite Catalyst for the Lithium–Air Battery
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A novel litchi-like Fe3O4/graphene composite as a cathode material of lithium–air batteries was successfully synthesized by an effective solvothermal method, with cheap and eco- friendly iron salts. The litchi-like Fe3O4 nanoparticles (NPs) which could provide a larger

Comparing of single reduction and CVT based transmissions on battery electric vehicle
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Abstract With the deterioration of the air pollution, growing public concerns over the exhaustion of global fossil energy and the explosive growth of passenger vehicles, the improvement and popularity of electric vehicles (EVs) have increased in market share.

Battery electric vehicles can reduce greenhouse gas emissions and make renewable energy cheaper in India
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India's National Mission on Electric Mobility (NMEM) sets a countrywide goal of deploying 6 to 7 million hybrid and electric vehicles (EVs) by 2020(Department of Heavy Industry, Government of India 2012). There are widespread concerns, both within and outside the

Lithium-ion Battery Security Guaranteeing Method Study Based on the State of Charge Estimation
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[Purpose] The security guaranteeing method for the lithium-ion battery is studied and a novel state of charge (SOC) estimation method is proposed based on the Kalman filtering (KF) thought, aiming to guarantee its safety in the power supply application of electric vehicles (

Test-retest Reliability and Practice Effects of the Turkish Version of Repeatable Battery for the Assessment of Neuropsychological Status (RBANS) in Healthy
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Objective: The Repeatable Battery for the Assessment of Neuropsychological Status (RBANS) is a widely used screening instrument in neuropsychological assessment. The present study aims to assess the reliability and practice effects of the Turkish version of the

Estimation and Control of Battery Electrochemistry Models: A Tutorial
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Abstract:This paper presents a tutorial on estimation and control problems for battery electrochemistry models. We present a background on battery electrochemistry, along with a comprehensive electrochemical (EChem) model. EChem models present a remarkably

Efficient Lithium-Ion Battery Model Predictive Control Using Differential Flatness-Based Pseudospectral Methods
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ABSTRACT This paper proposes an efficient nonlinear model predictive control (NMPC) framework to solve nonconvex lithium-ion battery trajectory optimization problems for battery management systems (BMS). It is challenging to solve these problems online due to

Interfacial Control for Enhanced Cycling Performance of Li-Ion Battery with Silicon-Based Anode and High-Voltage Layered Oxide Cathode
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Advanced portable electronics, electric vehicles and energy storage systems need more than doubled energy density lithium-ion battery than current one consisting of graphite anode and LiCoO2 cathode. High-capacity silicon-based anode materials and high-

Effect of Aspect Ratio of Titanium Dioxide Nanotube Arrays on the Performance of Lithium IonBattery
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The relationship between nanostructure of electrode and performance of lithium ion batteries is essential for achieving tunable lithium storage in lithium ion batteries (LIBs). For this purpose, controllable growth of vertically aligned TNAs are achieved at room

A Hierarchical Model for Lithium-Ion Battery Degradation Prediction
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Abstract Developing prognostics and health management (PHM) approaches for lithium-ion batteries has received increasing attention in recent years. This paper presents a new modeling framework to characterize lithium-ion battery degradation by examining detailed

Lithium-Ion Battery Cell-Balancing Algorithm for Battery Management System Based on Real-Time Outlier Detection
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A novel cell-balancing algorithm which was used for cell balancing of battery management system (BMS) was proposed in this paper. Cell balancing algorithm is a key technology for lithium-ion battery pack in the electric vehicle field. The distance-based outlier detection

Minimum cost solution of isolated battery-integrated diesel generator hybrid systems
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Abstract: The present paper develops a mathematical programming model to optimize the operation of a battery-integrated diesel generator hybrid system. The optimization approach is aimed at minimizing the cost function subject to the load energy requirements as well as

Battery Swapping Station management supported by Intelligent Transport Systems: an MPC approach.
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1 Abstract For a successful Electric Vehicle (EV) integration, it is necessary to cover several problems related to the charging process. Recently, Battery Swapping Station (BSS) strategies are arising as a promising alternative to the traditional Battery Charging Station

Battery Energy Management in Heterogeneous Wireless Machine-to-Machine Networks
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Abstract The IETF standardized the IPv6 Routing Protocol for Low-Power and Lossy Networks (RPL) to meet routing requirements of the emerging applications. RPL is a distributed routing protocol and shows good scalability and fast network setup. However,

Influence of the Electrode Materials on the Electrochemical Performance of Room Temperature Li-SO2 Rechargeable Battery
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The influence of the electrode material on the electrochemical properties of Li/SO2 rechargeable batteries containing a LiAlCl4-based inorganic electrolyte solution was investigated using various carbon black materials such as

Optimal design of battery energy storage system for a wind–diesel off-grid power system in a remote Canadian community
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Abstract: This study focuses on the design issue of battery energy storage system (BESS) for a wind–diesel off-grid power system located in the Whapmagoostui community in Quebec, Canada. The local range of wind speed is from 0 to 24.8417 m/s, and the total yearly load

High Volumetric Energy Density Lithium Ion Battery with Titania@ Carbon Nanostructure Electrode
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In typical lithium ion batteries, anodes mainly contained active materials, a binder such as polyvinylidene fluoride (PVDF), and a conducting agent such as Ketjen black. In this study, we proposed a conducting agent-free electrode structure (f-TiO2@ C) fabricated using

Experimental Study of Lead-acid Battery Remaining Capacity Measuring in Photovoltaic Energy Storage System
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Abstract The combination of ampere-hour method and open-circuit voltage method in the photovoltaic measurement system is studied in this paper. In order to achieve the purpose of online measurement for remaining capacity, the influence of internal battery discharge

Study of the Electroless Deposition of Ni for Betavoltaic Battery Using PN Junction without Seed Layer
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The method and conditions of Ni plating were optimized to maximize the output of a betavoltaic battery using radioactive 63 Ni. The difference of the short circuit currents between the pre-and postdeposition of 63 Ni on the PN junction was 90 nA at

Button Battery Ingestion in Children: Experience in Kurdistan Center for Gastroenterology and Hepatology
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Abstract Background: The vast majority of button battery (BB) ingestions occur when curious children explore their environment. Button batteries do not usually cause problems unless

The Structure and Meaning of a Computerized Neurocognitive Test Battery
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Abstract-Background: There exists a prevailing assumption that a neurocognitive test administered by a computer is equivalent to the same test administered conventionally by a

Technoeconomic Modeling of Battery Energy Storage in SAM
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Executive Summary Comprehensive lead-acid and lithium-ion battery models have been integrated with photovoltaic models giving System Advisor Model (SAM) the ability to predict the performance and economic benefit of behind the meter energy storage. In a system

Humic Acid-Derived Mesoporous Carbon as Cathode Component for Lithium-Sulfur Battery
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Ordered mesoporous carbon has successfully been synthesized using SBA-15 silica as the hard template and, for the first time, humic acids as the carbon source. The obtained carbonaceous material features hexagonally ordered pores with an average diameter of

INTERNAL RESISTANCE AS TERMINATION INDICATOR DURING LEAD-ACID BATTERYFORMATION
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Abstract Lead-acid batteries are a reliable, inexpensive energy storage technology used extensively in a wide range of applications. Before selling this technology to customers however, manufacturers must subject the batteries to a time-and energy-intensive charge

Intelligent Battery Management Design and Realization of Emergency Lights Base on Time Division Multiplexing and Balanced Charging Technology
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Abstract This paper introduces a design and realization method of battery management system about emergency light based on time division multiplexing and balanced charging technology. Through Calculating state of electric charge by detecting the battery charge

WISPCam: A Battery-Free RFID Camera
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Abstract:Energy-scavenging devices with general-purpose microcontrollers can support arbitrarily complex sensing tasks in theory, but in practice, energy limitations impose severe constraints on the application space. Richer sensing such as image capture would enable

Lithium Battery SOC Estimation Method Study Based on Principal Component Analysis
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Abstract Battery SOC is acted as an essential parameter for EV and HEV, its accurate estimate relates to whether the vehicle control strategy is implemented correctly. There has been no other prediction method, which can obtain a more accurate prediction result. To

Combination control for photovoltaic-battery-diesel hybrid micro grid system
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Abstract. It is facing resource shortage and environmental pollution around the globe, until the emergence of new renewable energy technology has reinvigorated traditional techniques. Development of renewable energy generation in China needs the joint efforts

ANN-Based Sizing of Battery Storage in a Stand-Alone PV System
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Abstract:Sizing of electric energy storage for effective operation of photovoltaic (PV) systems is very important particularly in remote areas. Because of the intermittent nature of sun and varying inclinations of PV modules, there is no single definite rule for sizing

Carbon nanoballs: formation mechanism and electrochemical performance as an electrode material for the air cathode of a Li-air battery
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Abstract: The Li-air battery is a promising candidate for the most energy-dense electrochemical power source because it has 5 to 10 times greater energy storage capacity than that of Li-ion batteries. However, the Li-air cell performance falls short of the

Selectively taming background android apps to improve battery lifetime
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Abstract Background activities on mobile devices can cause significant battery drain with little visibility or recourse to the user. ey can range from useful but sometimes overly aggressive tasks, such as polling for messages or updates from sensors and online

Performance Improvement of a Bidirectional DC-DC Converter for Battery Chargers using an LCLC Filter
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Abstract In this paper, a battery charger is introduced for an interleaved DC-DC converter with an LCLC filter. To improve the overall performance of the DC-DC converter for battery charger, a method is proposed. First, the structure of the system is presented. Second, an

2D Unsteady Simulation of All-Vanadium Redox Flow Battery
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ABSTRACT The all-vanadium redox flow battery has been considered as one of the most promising rechargeable battery for large scale energy storage system that can be united with renewable energy sources such as wind and solar energy for electrical energy

PDE Battery Model Simplification for SOC and SOH Estimator Design
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Abstract:Accurate knowledge of the battery state-of-charge (SOC) and state-of-health (SOH) is critical for optimal and safe utilisation of the battery. Although the battery system dynamics contain electrochemical, thermal, electrical, and ageing phenomena, most state

Research on the Development Strategies of New Energy Automotive Industry Based on Car Charging Stations and Battery Management
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Abstract With the continuous development of economy and progress of social, people for energy use more and more widely in the direction of new energy. In the use of new energy, automobile industry has continued to explore, new energy automobile industry mainly

Simplification techniques for PDE-based Li-Ion battery models
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Abstract:Battery systems are becoming increasingly prevalent as a source of power for applications across domains from consumer electronics to automotive, due to a range of factors such as portability and environmental considerations. The relatively high cost of

Influence of Cell Size on Performance of Lithium Ion Battery
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Page 1. BATTERY CONFERENCE 2015 Aachen, Germany 28th – 29th April 2015 Influence of Cell Size on Performance of Lithium Ion Battery Raghavendra Arunachala1, Sabine Arnold1, Lemuel Moraleja1, Tim Pixis2, Andreas Jossen2, Juergen Garche3

Impact of Direct Financial Incentives in the Emerging Battery Electric Vehicle Market: A Preliminary Analysis
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increase in tax credit value is associated with a 2% to 10% change in per-capita BEV registrations Impacts by vehicle make o Non-Tesla vehicles: 2% to 12% impact per of incentive o Tesla vehicles: Tax credit impacts positive, but not statistically

Geometric-Process-Based Battery Management Optimizing Policy for the Electric Bus
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With the rapid development of the electric vehicle industry and promotive policies worldwide, the electric bus (E-bus) has been adopted in many major cities around the world. One of the most important factors that restrain the widespread application of the E-bus is the high

Simulation and Optimization of a Wind/PV/Battery Hybrid Power System for a Commercial Building
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Abstract This study dealt with a time domain performance analysis for a standalone wind and solar hybrid system in a commercial building. Wind and solar sources combined with an energy storage would provide a better system reliability and make it suitable for stand-



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