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Performance requirements for relays on unusually long transmission lines

机译:传输线异常长时继电器的性能要求

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Analysis of fundamental bases of relaying made as part of the engineering for the 270-mile 154-kv interconnection between systems of Nebraska Power Company and Kansas Gas and Electric Company reveals that, of current, phase angle, impedance, and impedance angle, none alone offers satisfactory discrimination among open-circuit, short-circuit, and load conditions. Combination of input-impedance magnitude Z and impedance angle ψ = tan?1 X/R is studied by means of “impedance circle diagrams” of the interconnecting circuit. On these diagrams is charted the dynamic behavior of the interconnected systems during faults and surges of synchronizing power. The desirable areas of trip and no trip are mapped, and general specifications for the performance of relay systems are presented in terms of impedance magnitude and angle, Z ∠ ψ. Thereby full advantage can be taken of all possible synchronizing power inherently available over the interconnection and at the same time faults and approach of out-of-step condition can be recognized properly.
机译:作为内布拉斯加电力公司与堪萨斯天然气电力公司系统之间270英里154 kV互连工程的一部分,对继电器的基础进行了分析,结果表明,电流,相角,阻抗和阻抗角中没有一个是单独的在开路,短路和负载条件下提供令人满意的区分。借助互连电路的“阻抗圆图”,研究了输入阻抗幅度Z和阻抗角ψ= tan ?1 X / R的组合。在这些图表上绘制了互连系统在故障和同步电源浪涌期间的动态行为。映射了期望的跳闸和无跳闸区域,并根据阻抗幅度和角度Z∠ψ给出了继电器系统性能的一般规格。由此可以充分利用互连上固有的所有可能的同步功率,并且同时可以正确地识别故障和失步状态。

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