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A Buck Converter-based Battery Charging Controller for Electric Vehicles using Modified PI Control System

机译:用于电动车辆的基于降压转换器的电池充电控制器,用于电动车辆使用改进的PI控制系统

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A well functioned battery charger for electric vehicles can improve the life cycle of the battery. To control the overshoot, rise time and settling time with respect to the changing input voltage and load is the noticeable challenge in the field of battery charging. Usually, a PID controller has been used to overcome these challenges. However, PID controller is suitable for a specific configuration, and overshoot, oscillation happens when input voltage and load vary. In this paper, a buck converter-based battery charging controller is presented in which a modified proportional-integral (PI) controller is used. The modified $PI$ controller is tuned for charging the battery with minimum overshoot and settling time. To verify the viability, the proposed system has been simulated in MATLAB. The simulation results show that the overshoot is reduced to 1.23% with the settling time of 0.01s for the 48V battery bank.
机译:用于电动车辆的功能良好的电池充电器可以改善电池的生命周期。为了控制过冲,上升时间和相对于变化的输入电压和负载的稳定时间是电池充电领域的显着挑战。通常,PID控制器已被用于克服这些挑战。但是,PID控制器适用于特定配置,并且在输入电压和负载变化时发生过冲,振荡发生。本文提出了一种基于降压转换器的电池充电控制器,其中使用了改进的比例积分(PI)控制器。修改了 $ pi $ 调整控制器以充分充电,最小过冲和稳定时间。为了验证可行性,所提出的系统已在MATLAB中进行模拟。仿真结果表明,48V电池组的沉降时间为0.01秒的稳定时间减少到1.23%。

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