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Sinusoidal voltage control of a single phase uninterruptible power supply by a high gain PI circuit

机译:通过高增益PI电路进行单相不间断电源的正弦电压控制

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This paper presents analysis and design of a new control method of a single-phase voltage-source uninterruptible power supply (UPS) inverter with a high Q L-C low-pass filter. When a PWM inverter is used to feed the load, a L-C low-pass filter must be employed to eliminate the switching frequency component of output voltage harmonics. But, it may be observed that the high Q L-C low-pass filter causes oscillation of the output voltage on light load because the inverter is not able to decide on the one optimum control gain on all regions of the output power. Therefore, it is proposed to develop high-gain control which is accomplished by increasing the controller gain without additional sensors to avoid such problems and achieve a high reliability. The developed high speed high-gain control must be adopted with the following compensators; (a) saturation compensator of the normal controller; and (b) integrator wind-up compensator. In this paper, the developed high-gain control is applied to a UPS having a flywheel energy storage element. As a result, it is confirmed that the developed new high-gain control method reduces the oscillation of the output voltage and the system is stable.
机译:本文介绍了具有高Q L-C低通滤波器的单相电压源不间断电源(UPS)逆变器的新控制方法的分析和设计。当使用PWM逆变器馈送负载时,必须采用L-C低通滤波器来消除输出电压谐波的开关频率分量。但是,可以观察到,高Q L-C低通滤波器导致输出电压振荡在光负荷上,因为逆变器无法决定输出功率的所有区域上的一个最佳控制增益。因此,提出了通过增加控制器增益而无需额外传感器来开发高增益控制,以避免这种问题并实现高可靠性。开发的高速高增益控制必须采用以下补偿器; (a)正常控制器的饱和补偿器; (b)积分器卷绕补偿器。在本文中,开发的高增益控制应用于具有飞轮储能元件的UPS。结果,确认开发的新型高增益控制方法减少了输出电压的振荡,系统稳定。

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