小型电动汽车(轻型EV)模拟电池冷却系统

Fakhruddin Mohd, Zul Hassan, Hilmi Che, Daud, Z. Asus, Mohd Izhari Izmi Mazali, Ibtisyam Ardani, Mohd Kameil, Abdul Hamid, Fakhruddin Mohd Hassan, Zul Hilmi, Che Daud, Izmi Mazali
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摘要

电池热管理系统(BTMS)作为一种冷却系统被广泛应用于电动汽车(EV),以降低电池在放电和充电过程中从电池源产生的高温。由于电池的性能和循环寿命对温度非常敏感,因此保持适当的温度范围对于避免热问题和提高性能非常重要。因此,本项目的目的是研究不同类型的冷却系统对小型电动汽车(EV)的有效性。研究采用了电网中两种主要的冷却系统,即空气冷却和液体冷却。为了评估这些冷却系统的有效性,利用MATLAB/Simulink软件开发了电动汽车模型,并从研究中常用的几个行驶循环中对不同车速下的车辆进行了仿真。根据分析,NEDC、WLTP和HWFET下液冷系统的电池最高温度为23.14⁰C, 23.3⁰C和23.09⁰C,而空气冷却系统在23⁰C环境温度下分别为24.66⁰C, 26.3⁰C和24.4⁰C。本课题的研究结果表明,与风冷相比,液冷系统更能有效地维持电池的温度,因为温度的上升更容易控制。
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Simulation Battery Cooling System for Small Scale Electric Vehicle (Light EV)
The Battery Thermal Management System (BTMS) has widely used for Electric Vehicle (EV) as cooling system to reduce high temperature occurred from batteries source during discharge and charge process. Since the performance and cycle life of batteries are very sensitive to temperature, it important to maintain the proper temperature range in order to avoid the thermal issues and improve the performance. Therefore, the purpose of this project is to study the effectiveness of different type of cooling system for small scale Electric Vehicle (EV). The study is conducted by using two main types of cooling system that available in electricity grid which is air cooling and liquid cooling. In order to evaluate the effectiveness of those cooling system, an analysis is conducted by developing an EV model using MATLAB/Simulink software and simulated at different speed of the vehicle from the few driving cycle that commonly used in researcher paper. Based on the analysis, the maximum temperature of battery for liquid cooling system under NEDC, WLTP, and HWFET is 23.14 ⁰C, 23.3 ⁰C and 23.09 ⁰C compare to air cooling system which is 24.66 ⁰C, 26.3 ⁰C and 24.4 ⁰C respectively at 23 ⁰C of ambient temperature. As the result of this project is showed that the liquid cooling system are more effective to maintain the temperature of battery as the temperature rise more controlled compare to air cooling.
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