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Implementation and Experimental Verification of Smart Junction Box for Low-Voltage Automotive Electronics in Electric Vehicles

机译:电动汽车低压汽车电子智能接线盒的实施与实验验证

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摘要

In this study, we designed and implemented a smart junction box (SJB) that was optimized for supplying power to low-voltage headlights (13.5 V) in electric vehicles. The design incorporated a number of automotive semiconductor devices, and components were placed in a high-density arrangement to reduce the overall size of the final design. The heat generated by the SJB was efficiently managed to mount an Intelligent Power Switch (IPS), which was used to power the headlights onto the printed circuit board (PCB) to minimize the impact on other components. The SJB was designed to provide power to the headlights via pulse width modulation to extend their lifetime. In addition, overload protection and fail/safe functions were implemented in the software to improve the stability of the system, and a controller area network (CAN) bus was provided for communications with various components in the SJB as well as with external controllers. The performance of the SJB was validated via a load operation test to assess the short circuit and overload protection functions, and the output duty cycle was evaluated across a range of input voltages to ensure proper operation. Based on our results, the power supplied to the headlights was found to be uniform and stable.
机译:在本研究中,我们设计并实施了一个智能接线盒(SJB),该盒(SJB)经过优化,用于为电动车辆的低压头灯(13.5 V)提供电力。该设计并入了许多汽车半导体器件,并且将部件放置在高密度布置中以降低最终设计的总体尺寸。由SJB产生的热量有效地设为安装智能电源开关(IPS),该开关(IP)用于将前灯为电路板(PCB)电源供电,以最大限度地减少对其他组件的影响。 SJB旨在通过脉冲宽度调制为前灯提供电力以延长其寿命。此外,在软件中实现了过载保护和失败/安全功能,以提高系统的稳定性,并为控制器区域网络(CAN)总线提供用于SJB中的各种组件以及外部控制器。通过负载操作测试验证SJB的性能,以评估短路和过载保护功能,并在一系列输入电压上进行评估输出占空比,以确保正常运行。基于我们的结果,发现提供给前灯的电源是均匀和稳定的。

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