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Impact of Auto-Reclosing on Transmission to Dynamic Response of PSS Equipped Generator in Cirebon

机译:自动重合闸对井里汶装备PSS的发电机传动对动力响应的影响

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While a single-phase auto-reclosing scheme is being an operation practice throughout Java-Bali interconnection systems, only some implement both single and three-phase auto-reclosing (SPAR and TPAR) scheme to support its self-healing grid concept. For a transmission line particularly connected to a generator bus, auto-reclosing scenario should be assessed to achieve both stability in power generation and transmission. This paper discusses the implementation of SPAR and TPAR on a radial transmission system supplied by a 660 MW of power system stabiliser (PSS) equipped coal-fired power station in Cirebon 150 kV subsystem. Synchronisation parameters and auto-reclosing sequence are proposed according to [1] and [2]. Dynamic simulations using power system analysis software consisting of several transmission fault scenarios have been performed using the dynamic model of the 660 MW turbine-generator in the Java-Bali interconnection system to observe the dynamic response of the generator in the grid. The simulation result shows that the proposed auto-reclosing scenario would maintain the transient stability in the grid while also restraining the generator from excessive duties that could lead to electrical or mechanical failures [3].
机译:虽然单相自动闭合方案是java-bali互连系统的操作实践,但是只有一些实施单个和三相自动闭合(spar和tPar)方案,以支持其自我修复的网格概念。对于特别连接到发电机总线的传输线,应评估自动闭合方案以实现发电和传输的稳定性。本文讨论了在Cirebon 150 kV子系统中配备了660 MW的辐销传输系统对径向传输系统的径向传输系统的实施。根据[1]和[2]提出了同步参数和自动闭合序列。使用功率系统分析软件的动态模拟,该软件由Java-Bali互连系统中的660 MW涡轮发电机的动态模型进行了多种传输故障场景,以观察到网格中发电机的动态响应。仿真结果表明,所提出的自动闭合方案将保持网格中的瞬态稳定性,同时还将发电机抑制了可能导致电气或机械故障的过度职责[3]。

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