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Oscillatory angle control scheme for PWM static synchronous compensators under unbalanced conditions and system faults

机译:不平衡条件和系统故障下PWM静态同步补偿器的振荡角控制方案

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摘要

Grid connected Voltage Source Converters (VSCs) are the heart of many applications with power quality concerns due to their reactive power controllability. Among the widely used grid-connected applications of the VSCs, the Static Synchronous Compensators (STATCOMs) are commonly used for compensating the voltage quality problems that come from voltage sag and swell. In spite of superior feature of fast voltage regulation and reactive power support functionality, VSC-based STATCOMs have the major drawback of being sensitive to the grid disturbances, especially the unbalanced condition and faults. Moreover, when the STATCOMs are used in the Distributed Generation (DG) applications or reactive power support of the sensitive industrial load, the unbalanced condition becomes even more intolerable. Protection system usually trips due to over current or highly distorted current caused by negative sequence current flow under unbalanced conditions and system faults. This paper propose an alternative control structure to keep the VSC-based STATCOM online during the unbalanced condition and system faults by limiting the negative sequence current. This eliminates the need to redesign/overdesign of the STACOM power components and over rating of the semiconductor switches to operate under fault current. Converter MVA rating reduction will decrease the cost significantly. Proposed controller performance has been verified by simulation and Hardware-In-the-Loop test.
机译:由于无功功率可控性,并网电压源转换器(VSC)是许多具有电能质量问题的应用的核心。在VSC广泛使用的并网应用中,静态同步补偿器(STATCOM)通常用于补偿由于电压骤降和骤升而引起的电压质量问题。尽管具有快速稳压和无功支持功能的卓越功能,但基于VSC的STATCOM的主要缺点是对电网干扰(特别是不平衡状态和故障)敏感。此外,当STATCOM用于分布式发电(DG)应用或敏感工业负载的无功功率支持时,不平衡状况变得更加难以忍受。保护系统通常是由于在不平衡条件和系统故障下由负序电流引起的过电流或电流严重失真而跳闸。本文提出了一种可选的控制结构,通过限制负序电流,在不平衡状态和系统故障期间使基于VSC的STATCOM保持在线。这消除了对STACOM电源组件进行重新设计/过度设计以及在故障电流下工作的半导体开关的超额定额的需要。降低转换器的MVA等级将显着降低成本。拟议的控制器性能已通过仿真和在环测试进行了验证。

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