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A Switch-controlled Hybrid Power Quality Compensator for All-day Power Quality Compensation in AC-DC Networks at Different Times of Day

机译:开关控制的混合电能质量补偿器,用于一天中不同时间的AC-DC网络全天电能质量补偿

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The adoption of power electronic devices in most AC-DC power networks have caused power quality (PQ) issues such as harmonics, unbalance and low power factor. These issues should be solved by the most suitable compensation technology to guarantee the best compensation result. It is common that more than one PQ issue will be caused at a supply bus, usually with some issues affecting more than the others at different time of the day which depends on load flow and load compositions. Therefore, different compensation technologies should be used at different time of day to ensure the best compensation result at all time. This paper designs a switch-controlled hybrid power quality compensator to guarantee all-day best compensation for AC-DC networks. The hybrid PQ compensator is composed of multiple compensators with different functionalities and controlled by switches. The subjective-objective methodology (SOM) is used to determine which compensation technologies should be adopted at different times of day. Based on the decision, the switches will behave and the corresponding compensators will be connected or disconnected for compensation.
机译:大多数AC-DC电力网络中采用电力电子设备已经引起了电能质量(PQ)问题,例如谐波,不平衡和低功率因数。这些问题应通过最合适的补偿技术来解决,以保证最佳的补偿效果。通常会在电源总线上引起一个以上的PQ问题,通常某些问题在一天的不同时间会比其他问题影响更大,这取决于潮流和负载组成。因此,应在一天的不同时间使用不同的补偿技术,以确保始终获得最佳补偿效果。本文设计了一种开关控制的混合电能质量补偿器,以确保对AC-DC网络进行全天最佳补偿。混合PQ补偿器由具有不同功能并由开关控制的多个补偿器组成。主观目标方法(SOM)用于确定应在一天的不同时间采用哪种补偿技术。根据该决定,开关将起作用,相应的补偿器将被连接或断开以进行补偿。

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