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首页> 外文期刊>Power Electronics, IET >Charging/discharging system based on zeta/sepic converter and a sliding mode controller for dc bus voltage regulation
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Charging/discharging system based on zeta/sepic converter and a sliding mode controller for dc bus voltage regulation

机译:基于Zeta / SEPIC转换器的充电/放电系统和用于直流母线电压调节的滑动模式控制器

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摘要

This study proposes a charging/discharging system of energy storage devices (ESDs) to regulate the voltage of a dc bus. The proposed charging/discharging system is formed by a zeta/sepic converter and a sliding mode controller (SMC). The SMC uses a single sliding surface to regulate the dc bus voltage for the three operating modes of the charger/discharger converter (charging, discharging, and stand-by) and for ESD voltages lower, equal, or higher than the dc bus voltage. This study includes the stability analysis of the SMC and a design procedure of the SMC parameters. The charging/discharging system is simulated in PSIM, where the results confirm that the proposed SMC regulates the bus voltage in charging, discharging, and stand-by modes for different operating points of the system. Finally, the proposed charging/discharging system was constructed for demonstrating the feasibility of the solution for real applications. Moreover, the experimental results obtained in such a platform put into evidence the accuracy of the proposed SMC in regulating the bus voltage in all the possible conditions: bus voltage lower, equal or higher than ESD voltage, and during charge, discharge, and stand-by modes of the ESD.
机译:本研究提出了能量存储装置(ESD)的充电/放电系统来调节DC总线的电压。所提出的充电/放电系统由Zeta / Sepic转换器和滑动模式控制器(SMC)形成。 SMC使用单个滑动表面来调节充电器/放电转换器的三种操作模式(充电,放电和备用)和ESD电压的三个操作模式调节DC总线电压,而是等于或高于直流母线电压。该研究包括SMC的稳定性分析和SMC参数的设计过程。充电/放电系统在PSIM中模拟,其中结果证实,所提出的SMC调节充电,放电和备用模式时的总线电压,用于系统的不同操作点。最后,构建了所提出的充电/放电系统,用于证明溶液对真实应用的可行性。此外,在这种平台中获得的实验结果表明了所提出的SMC在所有可能条件下调节总线电压的准确性:总线电压降低,等于或高于ESD电压,以及在充电,放电和支架期间通过ESD的模式。

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