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A Comprehensive Study on Battery Management System and Dynamic Analysis of Lithium Polymer Battery

机译:锂聚合物电池电池管理系统的综合研究与动态分析

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摘要

The battery management system (BMS) is the most vital components of an electric vehicle. The main objective of the BMS is to ensure safe and consistent battery operation. To ensure proper functioning of the battery, state measuring and conditioning, cell balancing and control of charge are features that have been realized in BMS. The performance of different types of batteries is different under different environmental and working conditions. These irregularities in the performance of a battery are the primary challenge to the implementing of these functions in the BMS. State estimation of a battery, i.e. state of charge (SOC) and state of health (SOH), is a crucial function for a BMS. Li-Polymer battery has high discharge rate per unit mass and hence are very suitable for applications in electric automotive industry. This project addresses the modelling of a typical Li-Polymer battery and its dynamic characteristics. These battery models emulate the characteristics of real life Li-Po batteries, and help predict their behavior under different external as well as internal conditions. A dynamic model of lithium-polymer battery is designed using MATLAB/Simulink® in order to study the output characteristics of a lithium polymer battery unit. Dynamic simulations are done, which includes the effects of charging/discharging and operating temperature on battery terminal voltage output. The simulation results when compared to relevant studies, validated the model developed in the project.
机译:电池管理系统(BMS)是电动汽车最重要的组件。 BMS的主要目的是确保电池安全可靠地运行。为了确保电池正常工作,状态测量和调节,电池平衡和充电控制是BMS中已实现的功能。不同类型的电池在不同的环境和工作条件下的性能是不同的。电池性能的这些不规则性是在BMS中实现这些功能的主要挑战。电池的状态估计,即充电状态(SOC)和健康状态(SOH),对于BMS至关重要。锂聚合物电池每单位质量的放电率高,因此非常适合电动汽车行业的应用。该项目致力于典型锂聚合物电池的建模及其动态特性。这些电池模型可模拟现实生活中的锂电池的特性,并有助于预测其在不同外部和内部条件下的行为。为了研究锂聚合物电池单元的输出特性,使用MATLAB /Simulink®设计了锂聚合物电池动态模型。完成了动态仿真,其中包括充电/放电和工作温度对电池端子电压输出的影响。与相关研究相比,仿真结果验证了该项目中开发的模型。

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