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Improvement in Voltage Recovery Delay Phenomenon Caused by Air Conditioners Specific Performance

机译:空调特定性能引起的电压恢复延迟现象的改善

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Fault Induced Delayed Voltage Recovery (FIDVR) can cause a threat to the power system voltage stability. Due to the increasing penetration of Air Conditioning (A/C) loads in the power system and the specific behavior of these types of loads, the speed of voltage recovery is significantly reduced when a short circuit fault occurs in the power system. In this paper, a number of common A/Cs installed in the tropical region of southern Iran are investigated and their developed models are compared against the results of the related experimental modeling in other references. Subsequently, a comprehensive model is developed to simulate the behavior of A/C loads in a power system. To determine the power system vulnerabilities to voltage recovery, a screening method is proposed. Additionally, to increase the speed of voltage recovery, the “Impedance Deviation based Load Shedding” method is proposed. Using this method, the most effective buses in the improvement of delayed voltage recovery, are found and subsequently, the amount and priority of the load elimination needed to reduce the effects of FIDVR are determined. The results of simulations on the IEEE 39-bus test system, verifies the high performance of the load models employed and also the load shedding method used to address the FIDVR phenomenon.
机译:故障诱导的延迟电压恢复(FIDVR)可能会对电力系统的电压稳定性造成威胁。由于空调(A / C)负载在电力系统中的渗透率不断提高,并且这些类型的负载具有特定的性能,因此,当电力系统发生短路故障时,电压恢复的速度将大大降低。在本文中,对伊朗南部热带地区安装的许多常见空调进行了调查,并将其开发的模型与其他参考文献中相关实验模型的结果进行了比较。随后,开发了一个综合模型来模拟电力系统中A / C负载的行为。为了确定电力系统对电压恢复的脆弱性,提出了一种屏蔽方法。另外,为了提高电压恢复的速度,提出了“基于阻抗偏差的减载”方法。使用这种方法,可以找到改善延迟电压恢复的最有效的总线,然后确定减轻FIDVR影响所需的负载消除的数量和优先级。 IEEE 39总线测试系统上的仿真结果验证了所用负载模型的高性能以及用于解决FIDVR现象的减载方法。

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