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A Systematic Approach for the Design of the Digital Low-Pass Filters for Energy Storage Systems in EV Applications

机译:EV应用中的能量存储系统数字低通滤波器设计的系统方法

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摘要

Low-pass filters have been used widely in the supervisory energy management controllers (EMC) for electric vehicle applications. However, there has not been a comprehensive methodology for the selection of their key design characteristics, such as the passband, stopband, and attenuation capabilities. In this article, a novel, step-by-step procedure, for the design of the digital low-pass filters (DLPF) is presented for the EMC. Mathematical models for a generalized battery/supercapacitor (SC) structure are derived for the impedance functions of the system. These impedance functions are used to investigate the behavior of the sources and the converter in the frequency domain. Moreover, using the extracted information from the frequency response curves, the guidelines for design of the DLPF are presented. In addition to the DLPF, a fuzzy logic controller is developed to monitor the state-of-charge (SoC) of the SC bank to ensure its operation in a safe region. The controller is designed and tested for the Urban Dynamometer Driving Schedule, using MATLAB/Simulink. Finally, the theory and simulations are validated using a Typhoon hardware-in-loop real-time emulator.
机译:低通滤波器已广泛用于电动汽车应用的监控能量管理控制器(EMC)中。然而,选择其关键设计特性(例如通带,阻带和衰减能力)尚未进行全面的方法。在本文中,为EMC呈现了用于设计数字低通滤波器(DLPF)的新颖,逐步过程。推导出用于系统的阻抗函数的广义电池/超级电容器(SC)结构的数学模型。这些阻抗函数用于研究频域中源和转换器的行为。此外,使用来自频率响应曲线的提取信息,提出了DLPF的设计指导。除了DLPF之外,开发了一种模糊逻辑控制器,监控SC银行的充电状态(SOC),以确保其在安全区域中的操作。使用MATLAB / SIMULINK设计并测试了城市测力计驾驶计划的设计和测试。最后,使用台风硬件环路实时模拟器验证了理论和仿真。

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