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首页> 外文期刊>Applied Superconductivity, IEEE Transactions on >Analysis of Chaos in Josephson Junctions With External Magnetic Field for High-Precision Voltage Measurement in Electric Vehicles
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Analysis of Chaos in Josephson Junctions With External Magnetic Field for High-Precision Voltage Measurement in Electric Vehicles

机译:电动汽车高精度电压测量中具有外部磁场的约瑟夫森结的混沌分析

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摘要

This paper deals with analysis and control of chaos for high-precision voltage measurement in electric vehicles (EVs) based on Josephson voltage standards. The key is to take into account the effect of external magnetic field in EV environment on Josephson junctions. Based on a modified equivalent circuit model to characterize the Josephson junction, it can be identified that chaos is elicited by the external magnetic field. Consequently, a backstepping controller is designed to suppress the chaos, and hence improve the voltage measurement. Both mathematical derivation and numerical simulation are provided to validate the occurrence of chaos and the feasibility of the control scheme.
机译:本文基于约瑟夫森电压标准,对电动汽车(EV)的高精度电压测量中的混沌进行分析和控制。关键是要考虑EV环境中外部磁场对约瑟夫森结的影响。基于表征约瑟夫森结的改进等效电路模型,可以确定外部磁场引起了混沌。因此,设计了一种反步控制器来抑制混乱,从而改善电压测量。提供了数学推导和数值模拟,以验证混沌的发生和控制方案的可行性。

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