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Optimized Hybrid Modulation Strategy for AC Bypass Transformerless Single-Phase Photovoltaic Inverters

机译:交流旁路无变压器单相光伏逆变器的优化混合调制策略

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摘要

The full-bridge inverter, widely used for single-phase photovoltaic grid-connected applications, presents a leakage current issue. Therefore, an AC bypass branch is introduced to overcome this challenge. Nevertheless, existing modulation strategies entail drawbacks that should be addressed. One is the zero-crossing distortion (ZCD) of the AC current caused by neglecting the AC filter inductor voltage. Another is that the system cannot deliver reactive power because the AC bypass branch switches at the power frequency. To address these problems, this work proposes an optimized hybrid modulation strategy. To reduce ZCD, the phase angle of the inverter output voltage reference is shifted, thereby compensating for the neglected leading angle. To generate the reactive power, the interval of the negative power output is calculated using the power factor. In addition, the freewheeling switch is kept on when power is flowing into the grid and commutates at a high frequency when power is fed back to the DC side. In this manner, the dead-time insertion in the high-frequency switching area is minimized Finally, the performances of the proposed modulation strategy and traditional strategies are compared on a universal prototype inverter. Experimental results validate the theoretical analysis.
机译:全桥逆变器广泛用于单相光伏并网应用,存在泄漏电流问题。因此,引入了交流旁路支路以克服这一挑战。然而,现有的调制策略存在应解决的缺点。一种是由于忽略交流滤波器电感器电压而导致的交流电流过零失真(ZCD)。另一个是系统无法传递无功功率,因为​​交流旁路支路以工频切换。为了解决这些问题,这项工作提出了一种优化的混合调制策略。为了减小ZCD,逆变器输出电压参考的相角会发生偏移,从而补偿被忽略的超前角。为了产生无功功率,使用功率因数计算负功率输出的间隔。此外,当电源流入电网时,续流开关保持接通状态;当电源回馈至DC侧时,续流开关以高频率整流。以此方式,最小化了在高频开关区域中的死区时间插入。最后,在通用原型逆变器上比较了所提出的调制策略和传统策略的性能。实验结果验证了理论分析。

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