首页> 外文会议>International Conference on Electrical Engineering(ICEE 2009): towards a safe, reliable, sustainable, intelligent power system;ICEE 2009 >Impacts of Voltage Sags and Protection Coordination on Sensitive Equipment in Distribution System
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Impacts of Voltage Sags and Protection Coordination on Sensitive Equipment in Distribution System

机译:电压暂降和保护配合对配电系统敏感设备的影响

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Nowadays, more sensitive electronic equipment is widely used in modern power systems such as power converters and adjustable speed drivers. Power quality has been a greater interest in voltage sags due to their impacts on the performance of sensitive equipment (SE). Malfunction or failure of the equipment that leads to work or production losses can be caused by voltage sags. As a result, it is essential to have information on equipment sensitivity. If the magnitude and duration of voltage sag exceed the equipment sensitivity threshold, the equipment can be malfunctioned, and such a consequence can affect an entire automatic process, resulting in high economical losses. Reclosers and fuses are the main overcurrent protection devices in distribution systems. Poor coordination could adversely impact on the sensitive equipment. This paper presents a method to analyze the impacts of voltage sags and protection coordination on sensitive equipment. A fault position method and mathematical equations for protective devices are used to set up the protection setting and to calculate voltage sags. Voltage tolerance thresholds and protective device characteristics are used to analyze protection and sensitive equipment coordination. Based on the results, new settings for protective devices are done to consider sensitive equipment in distribution systems. The Roy Billinton Test System (RBTS) bus 2 is used to analyze the impact of voltage sags and protection coordination system on the sensitive equipment in distribution systems.
机译:如今,更灵敏的电子设备已广泛用于现代电源系统中,例如电源转换器和可调速驱动器。由于电压骤降会对敏感设备(SE)的性能产生影响,因此电能质量引起了人们更大的关注。电压骤降​​可能导致设备故障或故障,从而导致工作或生产损失。因此,获得有关设备敏感度的信息至关重要。如果电压骤降的幅度和持续时间超过设备灵敏度阈值,则设备可能会发生故障,并且这种后果可能会影响整个自动化过程,从而导致很高的经济损失。重合闸和保险丝是配电系统中的主要过流保护装置。协调不良可能会对敏感设备产生不利影响。本文提出了一种方法来分析电压骤降和保护协调对敏感设备的影响。使用保护设备的故障位置方法和数学方程式来设置保护设置并计算电压暂降。电压容限阈值和保护设备特性用于分析保护和敏感设备协调。根据结果​​,进行保护设备的新设置,以考虑配电系统中的敏感设备。 Roy Billinton测试系统(RBTS)总线2用于分析电压骤降和保护协调系统对配电系统中敏感设备的影响。

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