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Design of fuzzy based-rules control system for the unified power flow controller

机译:统一电流控制器模糊规则控制系统设计

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The Unified Power Flow controller (UPFC) is one of the Flexible A.C. Transmission Systems (FACTS) devices that has the unique capability of independently controlling the real and reactive power flow at different transmission angles, in addition to regulating the system bus voltage. In this research, the mathematical analysis of the effects of the UPFC's VA rating and the system Short Circuit Level (SCL) on the power flow are investigated to define the overall feasible operating area. Based on this analysis a new fuzzy logic controller has been proposed to improve the system performance. The controller rules are structured depending on the relationship between the series/shunt inserted voltages and the desired changes in real/reactive power flow in the power system. A power flow optimiser is designed based on real power priority logic and the on-line estimation of the SCL to define the appropriate operating point under different system contingencies. Three case studies are conducted to verify the capability of the UPFC and the effectiveness of the proposed fuzzy controller at different operating conditions.
机译:统一的电力流量控制器(UPFC)是灵活的A.C.传输系统(事实)装置之一,其具有独立地控制不同传输角度的实际和无功流量的独特能力,除了调节系统总线电压之外。在本研究中,研究了UPFC VA额定值和系统短路电平(SCL)对电流的影响的数学分析,以定义整体可行的操作区域。基于该分析,已经提出了一种新的模糊逻辑控制器来提高系统性能。控制器规则根据串联/分流插入电压与电力系统中的实际/无功流程中的所需变化来构造。功率流优化器是基于实际功率优先逻辑的设计和SCL的在线估计,以在不同的系统常规下定义适当的操作点。进行三种案例研究以验证UPFC的能力以及所提出的模糊控制器在不同操作条件下的有效性。

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