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Neural Decoupling Adaptative Control of a UPFC Power Flow Compensator

机译:UPFC电流补偿器的神经去耦适应性控制

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FACTS devices are high-speed, high power electronic components. Their fast response offers potential benefits for power system stability enhancement and allows utilities to operate their transmission systems even closer to their physical limitations, more efficiently, with improved reliability, greater stability and security than traditional mechanical switching technology. The Unified Power Flow Controller (UPFC) is a FACTS device capable of directing the real and reactive power flows within a power system, as well as compensating for transient and dynamic system conditions. The effectiveness of this compensator depends on the choice of the local control strategy. This paper investigates the application of some controllers based on on-line neural networks adaptation to control the UPFC for power flow compensation. The effectiveness of this control structure is demonstrated under different operating conditions of the UPFC system.
机译:事实是设备是高速,高功率的电子元件。它们的快速响应提供了电力系统稳定性增强的潜在好处,并且允许公用事业公司操作其传输系统更加接近其物理限制,更有效地具有比传统机械开关技术更高的可靠性,更高的稳定性和安全性。统一的电力流量控制器(UPFC)是一种能够引导电力系统内的实际和无功电流的事实装置,以及补偿瞬态和动态系统条件。该补偿器的有效性取决于局部控制策略的选择。本文研究了基于在线神经网络适应的基于在线神经网络的应用,以控制UPFC进行功率流量补偿。在UPFC系统的不同操作条件下对该控制结构的有效性进行了说明。

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