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Analysis of impacts of SVC on voltage collapse mechanism and maximum loadability

机译:SVC对电压崩溃机制和最大负载能力的影响分析

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Static var compensators (SVC) have been widely used to enhance voltage stability and power transfer. Dynamic control of large SVCs are able to maintain constant voltage over a wide range of operation. Allocation and size of SVCs are normally determined by off-line model analysis. However, under various operating conditions, e.g. change of system topology, redispatch of generation, load variation, etc., the SVC has different effects on maximum loadability and voltage stability. This can lead to voltage collapse at normal operating voltage when maximum loadability has been reached. Under this circumstance, classical undervoltage protection will fail to detect the problem. By addressing this issue, this paper scrutinizes the impact of SVC capacity on voltage collapse and the mechanism behind. The analysis results in a method to identify the maximum loadability in real time, which can be used as an indicator for online voltage stability monitoring. Finally, the methodology is validated by dynamic simulations in PSS/E.
机译:静态无功补偿器(SVC)已被广泛用于增强电压稳定性和功率传输。大型SVC的动态控制能够在广泛的工作范围内保持恒定电压。 SVC的分配和大小通常通过离线模型分析来确定。但是,在各种操作条件下,例如更改系统拓扑,重新分配发电,负载变化等,SVC对最大负载能力和电压稳定性有不同的影响。当达到最大负载能力时,这可能导致电压在正常工作电压下崩溃。在这种情况下,传统的欠压保护将无法检测到问题。通过解决这个问题,本文详细研究了SVC容量对电压崩溃的影响及其背后的机制。通过分析得出一种实时识别最大负载能力的方法,该方法可用作在线电压稳定性监控的指标。最后,通过PSS / E中的动态仿真验证了该方法。

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