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Decoupled control of quasi-Z source inverter for decentralised renewable energy application

机译:分离控制Quasi-Z源逆变器,用于分散可再生能源应用

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摘要

Decentralised renewable energy (DRE) systems are acclaimed worldwide as it serves as an alternate to the grid extension to remote areas having no access to electricity. The impedance source inverter (ZSI) has overcome the limitations of conventional voltage source inverter (VSI), have buck/boost capabilities. This paper presents an alternative approach of obtaining shoot-through pulses in a quasi-Z source inverter (qZSI) along with decoupled control by keeping dc link voltage constant instead of capacitor voltage. Dynamics of the system are investigated by deriving small signal model, the proposed control methodology uses separate controllers to handle dc and ac side dynamics to get desired shoot-through pulse and modulation index without any overlap, performance of the control methodology is verified under normal condition and under disturbances. Results are obtained using PSIM which verifies the control methodology and depicts the ability of disturbance rejection and effective reference tracking without compromising stability issues.
机译:分散的可再生能源(DRE)系统被誉为全球,因为它是与网格延伸的替代物,无法获得电力的偏远地区。阻抗源逆变器(ZSI)克服了传统电压源逆变器(VSI)的局限性,具有降压/升压能力。本文通过保持直流链路电压恒定而不是电容电压,呈现了在准Z源逆变器(QZSI)中获得射击脉冲的替代方法,以及解耦控制。通过推导小信号模型来研究系统的动态,所提出的控制方法使用单独的控制器来处理DC和AC侧动力学,以获得所需的脉冲脉冲和调制指数而无任何重叠,在正常情况下验证控制方法的性能在干扰下。使用PSIM获得的结果,该PSIM验证了控制方法,并描绘了干扰抑制和有效参考跟踪的能力而不会影响稳定性问题。

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