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首页> 外文期刊>Industrial Electronics, IEEE Transactions on >Dynamic Dead-Time Optimization and Phase Skipping Control Techniques for Three-Phase Microinverter Applications
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Dynamic Dead-Time Optimization and Phase Skipping Control Techniques for Three-Phase Microinverter Applications

机译:三相微逆变器应用的动态死区时间优化和跳相控制技术

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This paper introduces a combination of two proposed efficiency improvement techniques for a microinverter with current mode control zero-voltage switching output stages. The first technique is dynamic dead-time optimization wherein pulse width modulation dead times are dynamically adjusted as a function of load current. The second method is advanced phase skipping control which maximizes inverter efficiency by controlling power on individual phases depending on the available input power from the photovoltaic source. Neither of the techniques requires any additional circuit components and both can be easily implemented in digital controller firmware. The two techniques were designed and implemented in a 400-W three-phase microinverter prototype. The experimental results validate the theoretical analysis of these techniques and demonstrate that a significant efficiency improvement can be achieved by combining the two proposed control techniques.
机译:本文介绍了两种针对电流模式控制零电压开关输出级的微逆变器提出的效率改进技术。第一种技术是动态死区时间优化,其中根据负载电流动态调整脉宽调制死区时间。第二种方法是高级跳相控制,它可以根据光伏电源的可用输入功率控制各个相的功率,从而使逆变器效率最大化。两种技术都不需要任何额外的电路组件,并且都可以在数字控制器固件中轻松实现。这两种技术是在400W三相微型逆变器原型中设计和实现的。实验结果验证了这些技术的理论分析,并证明通过结合两种建议的控制技术可以显着提高效率。

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