battery IEEE PAPER, IEEE PROJECT



An experimental and analytical study of thermal runaway propagation in a large format lithium ion battery module with NCM pouch-cells in parallel
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As the main power of electric vehicles (EVs), the lithium ion battery is characterized by a constantly increasing energy density, which increases concern about the safety of lithium ion batteries [1 8]. Generally, the battery system for EVs is composed of numerous single cells

Thermodynamically consistent derivation of chemical potential of a battery solid particle from the regular solution theory applied to LiFePO4
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A rapid increase in mobile applications has resulted in intense research on energy storage materials. Due to their large capacity, Li-ion batteries with several possible active cathode materials are very popular. Maximizing the energy and power densities of such materials while ensuring

Synthesis of Nitrogen and Sulfur Co-Doped Sisal Fiber Carbon and Its Electrochemical Performance in Lithium-Ion Battery
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Heteroatoms substitution doping carbon materials were proved to be a useful strategy to tailor their physicochemical properties when it comes to energy application, here we present the fabrication of nitrogen and sulfur dual-doped sisal fiber carbon via a facile hydrothermal

Proof of Concept of an Iron-Iron (III) oxide hydroxide Battery Working at Neutral pH
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An iron-iron (III) oxide hydroxide battery working in a neutral pH range is introduced. It employs electrochemical deposition of metallic Fe at the negative electrode and FeIIIOOH at the positive electrode during charge and dissolution of both during discharge in an aqueous

Power-Positive Networking: Wireless-Charging-Based Networking to Protect Energy Against Battery DoS Attacks
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Power-Positive Networking: 3 initiating communications via RF for emergency communications. Because it uses the power subsystem and the power transfer signals, PPN provides unique features distinct from other RF-based networking channels. We propose

Porous Carbon Derived from Petals of Yulan Magnolia Doped with Ni and NiO as Anodes for Lithium Ion Battery
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Doping transition metal in biomass-derived carbon is a very common method to preparing anodes for lithium-ion batteries (LIBs). In this study, porous carbon derived from the petals of Yulan magnolia was doped with metallic nickel firstly. Thus, the metallic nickel core in the

Numerical Studies of Cell Stack for Zinc-Nickel Single Flow Battery
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A three-dimensional stationary model is established, based on the universal conservation laws and a kinetic model for reaction involving hydroxide and zinc ions, is applied to describe a zinc-nickel single flow battery cells stack. The model is validated against the

Structural Composite Lithium-Ion Battery : Effect of Intercalation induced volumetric changes on micro-damage
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Page 1. Structural Composite Lithium-ion Battery Effect of intercalation induced volumetric changes on micro-damage Johanna Xu Polymeric Composite Materials DOCTORAL THESIS Johanna Xu Structural Composite Lithium-ion Battery Effect of intercalation induced volumetric

A Hybrid Si@ C@ CNT@ C Anode by Anchoring Silicon Nanoparticles onto CNT for Enhancing Performance in Lithium Ion Battery
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We develop a facile method to anchor commercially available silicon nanoparticles (SiNPs) onto carbon nanotube (CNT) and fabricate the SiNPs and CNT based composite (denoted as Si@ C@ CNT@ C) through a living polymerization reaction combined with a

Preparation and Electrochemical Properties of Bamboo-based Carbon for Lithium-Ion- Battery Anode Material
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In this study, we use bamboo as a raw material and KOH as an activator to prepare a bamboo-based carbon anode material for use in lithium-ion batteries by applying the microwave radiation method. The crystal structure and morphology of the prepared material

High Performance Nano Sponge Li1. 2Mn0. 54Ni0. 13Co0. 13O2 Cathode via Synthesizing Nano Plate Precursor for Lithium Ion Battery
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In this work, we synthesized nano plate oxalate precursor via solvothermal method to obtain Nano Sponge Li1. 2Mn0. 54Ni0. 13Co0. 13O2 (NS-LMNCO) cathode material. During solvothemal process, ethanol and water solvents arrange oxalate nuclei to form plate-like

Renewable Energy Based Grid Connected Battery Projects around the World An Overview
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The environmental pollution, as well as gradual depletion of mineral resources has encouraged the world to move into renewable energy sources for generation of electricity. At present, the cost of using renewable energy sources, such as sunshine and wind in

Battery system integration as retrofit
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Using a Carbon Black for the Lead Powder Preparation from the Lead Paste by Calcination and Its Application as Positive Lead Plate for Lead Acid Battery
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In this work, the worn-out lead pastes of the seriously softened positive lead plates of a lead acid battery are, for the first time, successfully recovered to be lead powder using a facile method of carbon blackpresent calcination. Namely, the mixtures containing the worn-out

A Novel Model for Lithium-ion Battery Aging Quantitative Analysis Based on Pseudo Two-Dimension Expressions
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This paper proposes a novel model for lithium-ion battery aging quantitative analysis considering side reactions. The model is integrated with the transfer function type derived from a pseudo two-dimensional (P2D) model. The capacity fade, solid electrolyte interphase

Study of Sodium-ion Battery Based on Sodium Vanadium Phosphate and Sodium Titanate at Low Temperatures
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The purpose of this work was to study the performance of a sodium-ion battery based on the sodium vanadium phosphate/sodium titanate in the temperature range from+ 20 to45 C. To achieve this goal the methods of galvanostatic cycling and pulse chronopotentiometry were

The effects of Ca addition on corrosion and discharge performance of commercial pure aluminum alloy 1070 as anode for Aluminum-air battery
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The effects of calcium addition on the commercial pure aluminum alloy anode for Al-air battery in alkaline electrolyte were examined by potentiodynamic polarization, AC impedance, corrosion rate and discharge measurements. The results show that calcium

Design and Control of Single-Phase-to-Three-Phase PFC for Cereals Grinding System Fed by PV- Battery Microgrid
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PV/ Battery microgrids hold the most promising solution for providing electricity to remote areas. However, the power quality of these microgrids is vulnerable to nonlinear loads and power electronics components, often necessary to power certain systems such as the cereal

Novel core-shell Structure TiO2@ TiN Spheres as High-Performance Anode Material for Lithium-Ion Battery
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Novel core-shell structure TiO2@ TiN spheres are successfully synthetized as anode materials for Li-ion batteries. The obtained TiO2@ TiN electrodes exhibit superior rate performance and perfect cycle performance. The capacity of TiO2@ TiN electrodes remain


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