脉宽调制开关单电容改善功率因数

M. Raju Ahmed, M.J. Alam
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引用次数: 8

摘要

无功功率是影响电力系统设计和良好运行的重要因素。综合网络中传输线的实功率和无功功率由线路阻抗、电压大小、线路两端的差角以及在动态突发事件下线路对维护网络稳定的作用等因素决定。在电力系统中,无功补偿或控制是实现输电损耗最小化、输电能力最大化、电压维持在理想水平的重要环节。本文提出了一种用单个大型并联电容器代替一组开关电容器,自动将变滞后负载的功率因数提高到统一的新方法。基本上,这种控制方案是一种静态功率因数校正方法,通过连续电压或电流控制电容器。在这项工作中,通过双向开关改变电容器上的电压,以控制补偿电容器电流的大小,从而获得单位功率因数。该系统采用高速绝缘栅双极晶体管开关技术。开关器件的门信号是由一个紧凑的商用IC芯片SG1524B产生的。从这个意义上说,该方案很简单,它只使用一个静态双向开关,该开关由仅使用模拟ic和一些离散数字元件的电子控制电路控制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Power factor improvement by pulse width modulated switched single capacitor
Reactive power is recognized as an essential factor in the design and good operation of power system. Real and reactive power on a transmission line in an integrated network is governed by the line impedance, voltage magnitudes, the angle of differences at the line ends, and the role the line plays in maintaining network stability under dynamic contingencies. Reactive power compensation or control is essential part in a power system to minimize power transmission loss, to maximize power transmission capability, and to maintain the system voltage within desired level. In this paper a new method is proposed which improves the power factor automatically of varying lagging loads to unity, using one single large shunt capacitor instead of using a bank of switching capacitors. Basically, this control scheme is a static power factor correction method by continuous voltage or current control of a capacitor. In this work the voltage across the capacitor is being changed by a bi-directional switch to control the magnitude of compensating capacitor current and thereby attaining unity power factor. This system incorporates high-speed insulated gate bipolar transistor switching technology. The gate signal of the switching devices is generated by using a compact and commercially available IC chip SG1524B. The scheme is simple in this sense that it uses only one static bi-directional switch controlled by an electronic control circuit that uses only analog ICs and some discrete digital components.
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