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On the Problems of Current Limitations in Networks Based on Power Semiconductor Devices

机译:基于功率半导体器件的网络电流限制问题

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The presence of high short-circuit currents (200-300 kA) in autonomous and generator power systems of low and medium voltage classes, causing a decrease in the switching resource of switching facilities, necessitates the search for ways of limiting the current. The paper proposes a solution to this problem: a semiconductor current-limiting device based on a DC chopper, a DC-to-DC converter. This devices' features are its low dimensions and losses during typical operation. Semiconductor elements can be arranged quite compactly due to the lack of radiators for cooling, since the cooling process-taking into account the short duration of the current limitation process-is not efficient. The choice of semiconductor devices takes into account the short duration of the current load, as a result of which the temperature of the semiconductor structure does not exceed its permissible value. This paper presents a method for calculating the parameters of semiconductor devices, taking into account the current load as well as adjusting the magnitude of current limitation to a value that can be disconnected by switching devices. The short-term mode of operation of the power semiconductor device with current regulated by the frequency and duty cycle of its operation makes it possible to facilitate the required current limitation in the circuit for the subsequent fault clearance with a typical electrical device. The problem of overcurrent of one of the elements of the limiter is noted, which requires special attention to ensure that the semiconductor device is not overheated. This paper also presents the principle of current limitation, summarizes the results of experimental studies, and analyzes the presented capabilities of a semiconductor current limiter.
机译:低压和中压等级的自主和发电机电源系统中存在高短路电流 (200-300 kA),导致开关设施的开关资源减少,因此需要寻找限制电流的方法。本文提出了一种解决方案:一种基于直流斩波器的半导体限流器件,即DC-DC转换器。该器件的特点是尺寸小,在典型操作过程中损耗低。由于缺乏用于冷却的散热器,半导体元件可以非常紧凑地布置,因为考虑到电流限制过程的持续时间短,冷却过程效率不高。半导体器件的选择考虑到电流负载的持续时间短,因此半导体结构的温度不超过其允许值。本文提出了一种计算半导体器件参数的方法,同时考虑了电流负载,并将电流限制的大小调整到可以通过开关器件断开的值。功率半导体器件的短期工作模式,其电流由其工作频率和占空比调节,因此可以促进电路中所需的电流限制,以便使用典型的电气设备进行后续故障清除。注意到限幅器之一元件的过电流问题,需要特别注意以确保半导体器件不会过热。本文还介绍了限流原理,总结了实验研究结果,并分析了半导体限流器的功能。

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