A single-phase UPS system with harmonic suppression and reactive power compensation

S. D. da Silva, R. A. Modesto, Angelo Feracin Neto, Silvia G. de Souza Cervantes
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引用次数: 1

Abstract

This work proposes a control strategy applied to a single-phase uninterruptible power supply (UPS) system with series-parallel active power-line conditioning capabilities, allowing sinusoidal input current and sinusoidal output voltage, which results in an effective power factor correction. The UPS system is composed by two single-phase PWM converters in order to perform the active power line filter functions. The series converter acts as a series active power filter, which works as a sinusoidal current source in phase with the input voltage. The parallel converter acts as a parallel active power filter, which works as a sinusoidal voltage source in phase with the input voltage, providing sinusoidal voltage with low total harmonic distortion (THD). The detection of the angle-phase is performed using a single-phase PLL (Phase-Locked Loop) structure, which is based on instantaneous active power theory. The PLL system has been implemented into two-phase stationary reference frame. Thereby, a fictitious quadrature voltage needs to be generated, which must be orthogonal to the measured utility voltage. Both the control algorithm of the UPS system, which uses synchronous reference frame (SRF) method, and the active power flow that occurs through the UPS system will be described and analytically studied. Mathematical analysis of the SRF-based algorithm is presented and simulation results are performed to validate the theoretical development and to verify the performance of the UPS system.
具有谐波抑制和无功补偿的单相UPS系统
本研究提出了一种应用于具有串并联有源电力线调节能力的单相不间断电源(UPS)系统的控制策略,允许正弦输入电流和正弦输出电压,从而实现有效的功率因数校正。UPS系统由两个单相PWM变换器组成,以实现有源电力线滤波功能。串联变换器作为串联有源电源滤波器,作为与输入电压相对应的正弦电流源。并联变换器作为并联有源电力滤波器,作为与输入电压相相的正弦电压源,提供具有低总谐波失真(THD)的正弦电压。角相位的检测采用基于瞬时有功功率理论的单相锁相环(PLL)结构。锁相环系统已在两相静止参考系中实现。因此,需要产生一个虚构的正交电压,它必须与测量的实用电压正交。本文对采用同步参考系(SRF)方法的UPS系统的控制算法和UPS系统的有功潮流进行了描述和分析研究。对基于srf的算法进行了数学分析,并进行了仿真,验证了理论发展和UPS系统的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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