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An Isolated High-Frequency Link Microinverter Operated with Secondary-Side Modulation for Efficiency Improvement

机译:具有次级侧调制功能的隔离式高频链路微逆变器,可提高效率

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This paper discusses the operation of a single-stage, isolated, high-frequency ac-link-based single-phase dc-ac converter, suitable for photovoltaic microinverter applications, controlled using phase modulation of the secondary-side cycloconverter devices. A detailed analysis is presented explaining the impact of prominent circuit nonidealities such as device capacitance and transformer leakage inductance on circuit behavior. The proposed extended-dead-time based modulation scheme helps in achieving zero-voltage-switching of the primary devices over the entire line cycle of the ac output and also offers the benefit of reduced transformer rms current due to absence of circulating current in the zero state. A flyback-based regenerative clamp circuit is used for mitigating voltage spikes on the secondary devices arising due to leakage inductance induced oscillations. A generic commutation strategy is also discussed, which makes operation with nonunity power factor loads also possible. Experimental results on a 260-W laboratory prototype under different load conditions are presented to illustrate the discussed principles and highlight the performance improvements.
机译:本文讨论了单级,隔离式,基于高频交流链路的单相直流-交流转换器的工作,该转换器适用于光伏微逆变器应用,使用次级侧循环转换器器件的相位调制进行控制。给出了详细的分析,解释了重要的电路非理想因素(例如器件电容和变压器漏感)对电路性能的影响。所提出的基于延长死区时间的调制方案有助于在交流输出的整个线路周期内实现一次设备的零电压开关,并且由于零循环电流的存在,还具有降低变压器均方根电流的优势。州。基于反激的再生钳位电路用于减轻由于漏感引起的振荡而引起的次级设备上的电压尖峰。还讨论了通用的换向策略,这使得在非统一功率因数负载下运行也成为可能。给出了在260 W实验室原型在不同负载条件下的实验结果,以说明所讨论的原理并突出性能改进。

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