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A New Switching Control Approach to Reduce Capacitor Bank Inrush Current

机译:降低电容器组浪涌电流的新切换控制方法

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This paper presents the results analysis of switching's effect when capacitor bank operation against the amount of inrush current on the circuit breaker. The capacitor bank switching causes inrush current and high-frequency oscillation if there are two or more capacitor banks connected on the same bus. When it occurs repeatedly, the insulation from the electric equipment will weaken and breakdown. For this reason, we propose a method to reduce the inrush current using new controlled switching. Switching control is used to find the time (t) of circuit breakers' switching. So it can be seen the configuration of capacitor banks' switching causes minimal inrush current. We have done a case study 3 capacitors using Simulink. Variables used are inrush current (i_i), controlled switching time (t), and damping reactor (L_(reactor)). Inrush currents can be reduced by 99.8% using the proposed switching control method. The amount of inrush current is below the capability of the power breaker rating so that it does not cause a power breaker to interrupt and also does not cause overcurrent in the system. If the circuit breaker does not trip when there is a high inrush current in a short time, it can be dangerous for the electrical system equipment.
机译:本文介绍了电容器组对断路器上浪涌电流量的电容器组运行时切换效果的结果分析。如果在同一总线上连接两个或更多个电容器组,电容器组交换会导致浪涌电流和高频振荡。当它反复发生时,来自电气设备的绝缘将削弱和故障。因此,我们提出了一种使用新的受控切换来减少浪涌电流的方法。切换控制用于查找断路器切换的时间(t)。因此,可以看出电容器组切换的配置导致最小的浪涌电流。我们已经使用Simulink完成了一个案例研究3个电容器。使用的变量是浪涌电流(i_i),受控切换时间(t)和阻尼电抗器(l_(reastor))。使用所提出的开关控制方法可以减少99.8%的浪涌电流。浪涌电流的量低于断电器额定值的能力,使得它不会导致断电器中断并且也不会导致系统中的过电流。如果断路器在短时间内出现高浪涌电流时,则电气系统设备可能是危险的。

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