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A Voltage Sag Supporter Utilizing a PWM-Switched Autotransformer

机译:利用PWM开关自耦变压器的电压暂降支持器

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This paper proposes a novel distribution-level voltage control scheme that can compensate voltage sag and swell conditions in three-phase power systems. Faults occurring in power distribution systems or facilities in plants generally cause the voltage sag or swell. Sensitivity to voltage sags and swells varies within different applications. For sensitive loads, even a voltage sag of short duration can cause serious problems. Normally, a voltage interruption triggers a protection device, which causes the shutdown of the entire load. In order to mitigate power interruptions, this paper proposes a scheme for voltage sag support based on a pulse width modulated autotransformer. The proposed scheme is able to quickly recognize the voltage sag or swell condition, and it can correct the voltage by either boosting the input voltage during voltage sag events or reducing the voltage during swell events. The key advantage in this voltage control topology is that it uses only one controlled switch per phase to control the output voltage, thereby resulting in minimum cost per kVA. The paper presents the new voltage control topology, as well as the voltage detection method, the snubber design, and the commutation logic for the thyristor bypass switch. Experiments have been carried out to verify the validity of the proposed scheme
机译:本文提出了一种新颖的配电级电压控制方案,该方案可以补偿三相电力系统中的电压骤降和骤升条件。在工厂的配电系统或设施中发生的故障通常会导致电压骤降或骤升。在不同应用中,对电压骤降和骤升的敏感度会有所不同。对于敏感负载,即使持续时间很短,也可能导致严重问题。通常,电压中断会触发保护装置,从而导致整个负载关闭。为了减轻电源中断,本文提出了一种基于脉宽调制自耦变压器的电压暂降支持方案。所提出的方案能够快速识别电压骤降或骤升情况,并且可以通过在电压骤降事件期间升高输入电压或在骤升事件期间降低电压来校正电压。这种电压控制拓扑的主要优势在于,每相仅使用一个受控开关来控制输出电压,从而使每千伏安成本最低。本文介绍了新的电压控制拓扑结构,以及晶闸管旁路开关的电压检测方法,缓冲器设计和换向逻辑。已进行实验以验证所提出方案的有效性

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