电池-超级电容器混合储能系统的小信号建模与分析

Yu Zhang, Zhenhua Jiang, X. Yu
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引用次数: 31

摘要

电池/超级电容器混合储能系统积极结合两种储能装置,以获得更好的功率和能量性能。本文提出了一个详细的小信号数学模型,该模型可以表示变流器接口储能系统在稳态工作点附近的动态。该模型考虑了各个储能装置的电压-电流特性、功率变换器和滤波器参数、控制器参数等多种因素对电流的影响。该模型以电池电流、超级电容电流和直流母线电压的变化为状态变量,以电源变换器占空比的变化为控制输入,以电池电压、超级电容电压和负载电流的变化为外部扰动。基于混合能源系统的小信号模型,建立了电池与超级电容器功率共享的频域模型和控制策略。分析了开环和闭环系统的频域特性。通过时域仿真验证了系统的运行情况。研究了系统参数和控制器参数对系统性能的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Small-signal modeling and analysis of battery-supercapacitor hybrid energy storage systems
The battery/supercapacitor hybrid energy storage system actively combines two energy storage devices to achieve better power and energy performances. This paper presents a detailed small-signal mathematical model that can represent the dynamics of the converter-interfaced energy storage system around the steady-state operating point. This model takes into account the effects on the currents of a variety of factors such as the voltage-current characteristics of individual energy storage devices, power converter and filter parameters, and controller parameters. The proposed model considers the variations in the battery current, supercapacitor current and DC bus voltage as state variables, the variations in the power converter duty cycles as the control input, and the variations in the battery voltage, supercapacitor voltage and load current as external disturbances. Frequency-domain model and control strategies for the power sharing between the battery and supercapacitor are developed based on the small-signal model of the hybrid energy system. Frequency-domain characteristics of the open-loop and closed-loop systems are analyzed. Time-domain simulation is used to verify the system operation. The effects of system and controller parameters on the system performance are also studied.
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