基于FPGA的单相双向变换器UPS系统控制策略

B. I. Rani, G. S. Ilango, C. Nagamani, P. Rao
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引用次数: 3

摘要

不间断电源被广泛应用于在停电情况下为负载提供不间断电源。典型的UPS系统由两个电源转换器组成,即一个整流器/充电器为电池充电,一个逆变器提供交流正弦输出。采用单个变流器进行整流和反转过程,减少了硬件组件。本文提出了一种用于UPS系统的单相双向变换器的控制策略。在正常模式下,电网通过双向变流器向蓄电池供电和充电。该变换器采用滞后电流控制器控制,并采用恒流充电技术对电池进行充电。当电网发生故障时,蓄电池通过变流器向负载供电,变流器以电压控制方式运行,维持负载电压。该系统具有硬件体积小、线路电流谐波失真小、电网故障时负载电压可调节等优点。在MATLAB/Simulink中对该控制策略进行了仿真,并在ALTERA cyclone II FPGA板上实现。在实验室搭建的样机上对系统的稳态和动态响应进行了仿真和实验验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Control strategy for a single phase bidirectional converter based UPS system using FPGA
Uninterruptible power supplies are widely used to supply uninterrupted power to the loads under power failure. Typical UPS systems consists of two power converters namely a rectifier/charger which charges the batteries and an inverter to provide an ac sinusoidal output. Employing a single converter for both rectification and inversion process reduces the hardware components. This paper presents a control strategy for the single phase bidirectional converter used in UPS systems. Under normal mode, the grid supplies the loads and charges the battery through the bidirectional converter. The converter is controlled using a hysteresis current controller and a constant current charging technique is used to charge the batteries. Upon grid failure, the battery supplies the load through the converter which operates in voltage control mode to maintain the load voltage. This system offers the advantage of reduced hardware, low harmonic distortion of line current and regulation of load voltage under grid failure. The control strategy is simulated in MATLAB/Simulink and implemented in an ALTERA cyclone II FPGA board. The steady state and the dynamic response of the system are simulated and verified experimentally on the prototype unit built in the laboratory.
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