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Testing Electric Vehicle Sub-Systems Using Low Cost Programmable Electronic Load

机译:使用低成本可编程电子负载测试电动车辆子系统

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The advancements in Electric Vehicles have introduced many complex sub-systems with demanding and sporadic power needs. For example, the current consumed by electric motor or bank of super-capacitors involve transients making them non-linear loads. Conventional test systems for load analysis mainly involved resistive loads where the rate of rise or fall of current was linear, falling short to accommodate the dynamic behavior of the Electric Vehicle loads. In this paper, we have proposed a low cost; yet effective electronic load that is independent of the battery voltage and can sink the current in any prescribed pattern with respect to time. The simulation results have shown the effectiveness of the hardware with respect to changes in temperature, aging and sudden input fluctuations. The implemented electronic load is interfaced to a desktop application to program the dynamic load behavior and the test duration. The same interface can act as data logger for long duration environmental and longevity tests. The indigenous system has proven quite useful for design validation tests and during End-of-Line testing of systems like DC-DC convertors and Battery chargers.
机译:电动汽车的进步引入了许多复杂的子系统,具有苛刻和散发的功率需求。例如,电动机或超级电容器堤消耗的电流涉及瞬变使其成为非线性负载。用于负载分析的传统测试系统主要涉及电流率或电流率的电阻载荷线性,下降以适应电动车辆负载的动态行为。在本文中,我们提出了低成本;然而,独立于电池电压的有效电子负载,并且可以相对于时间沉入任何规定的图案中的电流。仿真结果表明了硬件相对于温度变化,老化和突然输入波动的有效性。实现的电子负载与桌面应用程序接口以编程动态负载行为和测试持续时间。相同的界面可以充当数据记录器,以实现长期的环境和寿命测试。本土系统已证明对设计验证测试以及DC-DC转换器和电池充电器等系统的线路终端测试中非常有用。

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