Modeling of the automotive 14 V power net for voltage stability analysis

R. Gehring, Joachim Froschl, T. P. Kohler, H. Herzog
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引用次数: 18

Abstract

The number of electrical components in cars has steadily increased in recent years. Furthermore, systems with high peak loads like engine-start-stop systems and x-by-wire systems will be employed in the near future. These peak loads lead to voltage fluctuations within the power net. To guarantee the proper functioning of all electrical components, a stable voltage supply is necessary. This paper describes the modeling of the automotive power net with emphasis on the wiring harness and the chassis ground and the electrical phenomena, which must be taken into account in a voltage stability analysis of the automotive power net, are discussed. A comparison of simulations and experimental results is used to validate the derived models.
汽车14v电网电压稳定性分析的建模
近年来,汽车中电子元件的数量稳步增加。此外,在不久的将来,发动机启停系统和x线传系统等高峰值负载系统也将得到应用。这些峰值负荷导致电网内电压波动。为了保证所有电气元件的正常工作,稳定的电压供应是必要的。本文介绍了汽车电网的建模,重点讨论了汽车电网的线束和底盘接地,并讨论了汽车电网电压稳定性分析中必须考虑的电气现象。仿真结果与实验结果进行了比较,验证了模型的正确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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