Cascade sliding mode control implementation in photovoltaic power supply for camping-car applications

Q3 Energy Journal of Energy Systems Pub Date : 2023-07-29 DOI:10.30521/jes.1205696
Zaidi Abdelazi̇z, Chrigui Mohamed, N. Zanzouri
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Abstract

A cascade proportional integral sliding mode control for a two-stage interleaved boost converter (2IBC) serving as a reliable supplementary power source for camping-car applications is reported. Unlike the active fault-tolerant control approaches used for interleaved boost converters, which require controller reconfiguration, the proposed control scheme is passive fault-tolerant and does not require reconfiguration in the event of a faulty stage. The 2IBC model is analyzed together with the most important parasitic parameters, then, the averaged state-space model is derived to implement the control scheme. The appropriate linear cascade control is determined by using the small-signal equivalent model and improving the robustness and dynamic performance, thereby a proportional integrator controller is replaced by a sliding mode controller. The prototype system uses a signal processor and a low-power solar panel. The control code is generated by a PSIM software and loaded to the via a code composer tool. The experimental results validate the control design and demonstrate the efficiency of the proposed control scheme. In addition, the proposed controller ensures the continuity of service in the event of a faulty stage by verifying the reliability of the power supply.
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梯级滑模控制在露营车光伏电源中的实现
报道了一种用于露营车可靠补充电源的两级交错升压变换器(2IBC)的串级比例积分滑模控制方法。与用于交错升压转换器的主动容错控制方法(需要重新配置控制器)不同,所提出的控制方案是被动容错的,并且在发生故障阶段时不需要重新配置。分析了2IBC模型和最重要的寄生参数,推导了平均状态空间模型来实现控制方案。利用小信号等效模型确定合适的线性串级控制,提高系统的鲁棒性和动态性能,从而用滑模控制器代替比例积分器控制器。原型系统使用一个信号处理器和一个低功率太阳能电池板。控制代码由PSIM软件生成,并通过代码编写工具加载到程序中。实验结果验证了控制设计的正确性,证明了所提控制方案的有效性。此外,所提出的控制器通过验证电源的可靠性来确保在故障阶段时服务的连续性。
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来源期刊
Journal of Energy Systems
Journal of Energy Systems Environmental Science-Management, Monitoring, Policy and Law
CiteScore
1.60
自引率
0.00%
发文量
29
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