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Time-Varying and Constant Switching Frequency-Based Sliding-Mode Control Methods for Transformerless DVR Employing Half-Bridge VSI

机译:基于半桥VSI的无变压器DVR基于时变和恒定开关频率的滑模控制方法

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摘要

This paper presents time-varying and constant switching frequency based sliding-mode control (SMC) methods for three-phase transformerless dynamic voltage restorers (TDVRs) which employ half-bridge voltage source inverter. An equation is derived for the time-varying switching frequency. However, since the time-varying switching frequency is not desired in practice, a smoothing operation is applied to the sliding surface function within a narrow boundary layer with the aim of eliminating the chattering effect and achieving a constant switching frequency operation. The control signal obtained from the smoothing operation is compared with a triangular carrier signal to produce the pulse width modulation signals. The feasibility of both SMC methods has been validated by experimental results obtained from a TDVR operating under highly distorted grid voltages and voltage sags. The results obtained from both methods show excellent performance in terms of dynamic response and low total harmonic distortion (THD) in the load voltage. However, the constant switching frequency-based SMC method not only offers a constant switching frequency at all times and preserves the inherent advantages of the SMC, but also leads to smaller THD in the load voltage than that of time-varying switching frequency-based SMC method.
机译:本文针对采用半桥电压源逆变器的三相无变压器动态电压恢复器(TDVR),提出了基于时变和恒定开关频率的滑模控制(SMC)方法。推导了随时间变化的开关频率的方程。然而,由于在实践中不希望随时间变化的开关频率,因此为了消除颤动效应并实现恒定的开关频率操作,将平滑操作应用于窄边界层内的滑动表面功能。从平滑操作获得的控制信号与三角载波信号进行比较以产生脉冲宽度调制信号。两种SMC方法的可行性已通过在高度扭曲的电网电压和电压骤降下运行的TDVR获得的实验结果得到验证。从这两种方法获得的结果在负载响应中的动态响应和低总谐波失真(THD)方面均表现出出色的性能。但是,基于恒定开关频率的SMC方法不仅始终提供恒定的开关频率,并保留了SMC的固有优势,而且与基于时变开关频率的SMC相比,其负载电压的总谐波失真更小。方法。

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