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Extended Application of D- src='/images/tex/25054.gif' alt='{bf Σ}'> Digital Control to a Single-Phase Bidirectional Inverter With an LCL Filter

机译:D- src =“ / images / tex / 25054.gif” alt =“ {bfΣ}”> 具有单相双向变频器的数字控制的扩展应用 LCL 过滤器

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Division-summation (D-Σ) digital control has been successfully applied to the single-phase bidirectional inverter with an filter, which can cover wide inductance variation and achieve precise inverter current tracking. However, high frequency ripple current injection to the grid cannot be avoided, and an filter is therefore required. Since there typically exist grid voltage harmonics, the injected grid current will contain harmonic components due to the effect of the -filter capacitor. This paper presents an extended application of the D-Σ digital control associated with a filter-capacitor-current compensation to reduce the injected grid-current harmonics. The control laws of the inverter with the D-Σ digital control and compensation approach are derived in detail, and the reduction of grid-current harmonics is analyzed. With the proposed approaches, the phase margin between the output impedance of the inverter and grid impedance can be higher than 80° from low to high frequencies, and the inverter can achieve high harmonic voltage rejection ratio up to 39th harmonic, which is relatively suitable for weak grid connection. Experimental results measured from a 5-kW single-phase bidirectional inverter have verified the feasible application of the D-Σ digital control and proposed compensation.
机译:分区求和(D-Σ)数字控制已成功应用于带滤波器的单相双向逆变器,该逆变器可以覆盖较大的电感变化并实现精确的逆变器电流跟踪。然而,无法避免向电网注入高频纹波电流,因此需要滤波器。由于通常存在电网电压谐波,由于滤波电容器的作用,注入的电网电流将包含谐波分量。本文介绍了与滤波电容器电流补偿相关的D-Σ数字控制的扩展应用,以减少注入的电网电流谐波。详细推导了采用D-Σ数字控制和补偿方法的逆变器的控制规律,并分析了电网电流谐波的减少情况。通过提出的方法,从低频到高频,逆变器的输出阻抗与电网阻抗之间的相位裕度可以高于80°,并且逆变器可以实现高达39次谐波的高谐波电压抑制比,这相对适合于电网连接薄弱。从5 kW单相双向逆变器测得的实验结果证明了D-Σ数字控制的可行性应用并提出了补偿方案。

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