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Experimental investigations on breakdown in cable insulation

机译:电缆绝缘击穿的实验研究

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High voltage cables are used worldwide to transmit electric power in special cases such as underground and underwater, where the overhead lines can't be used. Polymeric cable insulation is most commonly used for high voltage applications due to its several advantages like maintenance free when compared to oil impregnated paper. As well known, insulation is the very important concern in high voltage system. Once insulation breakdown occurs, the entire electrical system may get collapsed. So, it is necessary to understand the behaviour of insulation under different stress conditions. Several research papers explained about insulation failure that occurs due to electrical and thermal stress. But in actual practice, the high voltage cable is subjected to both electrical and thermal stress simultaneously. So, the authors have performed a series of experiments by applying both thermal and electrical stress simultaneously in power cable. The various thermal stresses are created in power cable by injecting different load current and conducted breakdown test at the controlled outer temperature of 30 °C. The different temperatures that are produced by load currents in the insulation are analyzed. These test methods are used to investigate the dependency of breakdown voltage under different thermal conditions. The distributions of breakdown voltages under different stress were studied by using Weibull distribution.
机译:在特殊情况下(例如地下和水下),无法使用架空线,全世界范围内都使用高压电缆来传输电力。聚合物电缆绝缘层最常见于高压应用,这是因为它具有许多优点,例如与油浸纸相比无需维护。众所周知,绝缘是高压系统中非常重要的问题。一旦发生绝缘击穿,整个电气系统可能会崩溃。因此,有必要了解绝缘在不同应力条件下的行为。几篇研究论文解释了由于电应力和热应力而导致的绝缘失效。但是在实际中,高压电缆同时承受电应力和热应力。因此,作者通过在电缆中同时施加热应力和电应力进行了一系列实验。通过注入不同的负载电流并在受控的外部温度30°C下进行击穿测试,会在电力电缆中产生各种热应力。分析了绝缘中负载电流产生的不同温度。这些测试方法用于研究不同热条件下击穿电压的依赖性。利用Weibull分布研究了不同应力下的击穿电压分布。

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