Thermal Endurance of Cables by Connecting of Distributed Generation Objects to the Electric Power System

Stepan Borvanov, D. Asainov
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Abstract

By projecting of electrical annex of power plants not only the choice of the main electrical installations is conducted (e.g. generators, transformers, circuit-breakers), but also of cable lines. By checking of generator stator circuit cables for thermal endurance the thermal effect time is the short circuit clearance time by the operation of the main protective equipment and the current is the short circuit current from the electric power system or the generator. The goal of this paper is to adjust the cable choice method in a stator circuit of a low-power generator inbuilt in the existing nodes of the electrical power system as a distributed generation object. By thermal endurance check of stator circuit installations for such generators the short circuit reference point may be on the adjoined segment of the electrical grid. In this case, by electrically close short circuits and after their clearance without disconnection of the generator from the power grid an additional current rush and asynchronous operation current will increase the thermal generation. Recommendations for refinement of cable thermal endurance check method were developed for a gas turbine low-power generator, which operates parallel to the electric power system.
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分布式发电设备与电力系统连接时电缆的耐热性
通过电厂电气附件的投影,不仅可以选择主要的电气装置(如发电机、变压器、断路器),还可以选择电缆线路。通过检查发电机定子电路电缆的耐热性,得出热效应时间为主保护设备动作引起的短路间隙时间,电流为电力系统或发电机产生的短路电流。本文的目的是对电力系统现有节点中作为分布式发电对象的小功率发电机定子电路中的电缆选择方法进行调整。通过对这类发电机定子电路装置的热耐久性检查,短路参考点可能在电网的相邻部分。在这种情况下,通过电气闭合短路,并且在不断开发电机与电网的连接的情况下清除短路后,额外的电流涌流和异步运行电流将增加热产生。针对与电力系统并联运行的燃气轮机小功率发电机,提出了改进电缆热耐久性检查方法的建议。
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