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An Improved Reliability Cuk Based Solar Inverter With Sliding Mode Control

机译:具有滑模控制的基于可靠性Cuk的改进型太阳能逆变器

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摘要

Many photovoltaic inverter designs make use of a buck based switched mode power supply (SMPS) to produce a rectified sinusoidal waveform. This waveform is then unfolded by a low frequency switching structure to produce a fully sinusoidal waveform. The Cuk SMPS could offer advantages over the buck in such applications. Unfortunately the Cuk converter is considered to be difficult to control using classical methods. Correct closed loop design is essential for stable operation of Cuk converters. Due to these stability issues, Cuk converter based designs often require stiff low bandwidth control loops. In order to achieve this stable closed loop performance, traditional designs invariably need large, unreliable electrolytic capacitors. In this paper, an inverter with a sliding mode control approach is presented which enables the designer to make use of the Cuk converters advantages, while ameliorating control difficulties. This control method allows the selection of passive components based predominantly on ripple and reliability specifications while requiring only one state reference signal. This allows much smaller, more reliable non-electrolytic capacitors to be used. A prototype inverter has been constructed and results obtained which demonstrate the design flexibility of the Cuk topology when coupled with sliding mode control.
机译:许多光伏逆变器设计都利用基于降压的开关模式电源(SMPS)来产生整流正弦波形。然后,该波形通过低频开关结构展开,以产生完全正弦波的波形。在此类应用中,Cuk SMPS可能会提供优于其他产品的优势。不幸的是,Cuk转换器被认为难以使用经典方法进行控制。正确的闭环设计对于Cuk转换器的稳定运行至关重要。由于这些稳定性问题,基于Cuk转换器的设计通常需要严格的低带宽控制环路。为了实现这种稳定的闭环性能,传统设计总是需要大型,不可靠的电解电容器。在本文中,提出了一种具有滑模控制方法的逆变器,使设计人员能够利用Cuk转换器的优点,同时减轻控制困难。这种控制方法允许主要基于纹波和可靠性指标来选择无源元件,而只需要一个状态参考信号。这允许使用更小,更可靠的非电解电容器。已经构建了原型逆变器,并获得了结果,证明了与滑模控制结合使用时Cuk拓扑的设计灵活性。

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