无刷直流电机恒转矩变减速再生制动系统的实验验证

Peter K. Abraham, Jayan Namboodiry, D. Mary
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引用次数: 2

摘要

电动汽车的再生制动系统有助于有效地利用电池电力,延长车辆的范围。提出了一种可有效应用于锂离子电池电动汽车的无刷直流电机恒转矩变减速单开关再生制动系统,并对其性能进行了实验评价。通过改变电池的充电电流来控制电机的减速,充电电流取决于制动踏板的下陷角度,在再生制动时通过保持电机电流恒定来保持恒定的制动力矩。利用MATLAB/Simulink模型对该系统进行了仿真和评估,验证了该系统在各种牵引环境下的性能。研究结果支持了该系统的高性能。为了实验验证,制作了系统原型,并在不同制动力和速度下进行了实验。已经确定所提出的系统能够在现实环境中实现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental Validation of a Constant Torque Variable Deceleration Regenerative Braking System for a Brushless DC Motor
An electric vehicle’s regenerative braking system aids in the efficient application of battery power to prolong the vehicle’s range.In this paper, a constant torque variable deceleration single switch regenerative braking system for a bldc motor, which can be very effectively implemented in electic vehicles with lithium ion battery is proposed and performance is evaluated experimentally. The motor deceleration can be controlled by varying the charging current of the battery which depands upon the depression angle of brake pedal and constant braking torque is maintained by keeping the motor current constant at the time of regenerative braking. The suggested system was simulated and evaluated using MATLAB/Simulink model to validate its performance under various traction circumstances. The findings support the proposed system’s high capabilities.For experimental validation a prototype of the proposed system is fabricated and experiment conducted at different braking forces and speed. It has been established that the proposed system is capable of being implemented in a real-world setting.
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