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Design of backstepping control for high-performance inverter with stand-alone and grid-connected power-supply modes

机译:具有独立和并网电源模式的高性能逆变器的反步控制设计

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摘要

In this study, the backstepping control (BSC) design for a high-performance inverter with the functions of stand-alone and grid-connected power supply is developed so that distributed generation units can operate individually or in a micro-grid mode. In the stand-alone power-supply mode, the output ac voltage can supply to ac loads. In the grid-connected powersupply mode, the goal of power management can be achieved by controlling the amplitude and direction of the output current in the inverter. As a result, the proposed high-performance inverter with the BSC scheme has the output voltage with a low total harmonic distortion in the stand-alone power-supply mode and the output current with a high-power factor in the gridconnected power-supply mode to provide an ac output with high-performance power quality. The effectiveness of the proposed high-performance inverter with the BSC is verified by experimental results of a 3 kW prototype, and the merit of the proposed BSC scheme is indicated in comparison with previous proportional-integral control, proportional-resonant control and adaptive total sliding-mode control strategies.
机译:在这项研究中,开发了具有独立和并网电源功能的高性能逆变器的反步控制(BSC)设计,以便分布式发电机组可以单独运行或以微电网模式运行。在独立电源模式下,输出交流电压可以提供给交流负载。在并网电源模式下,可以通过控制逆变器中输出电流的幅度和方向来实现电源管理的目标。结果,提出的具有BSC方案的高性能逆变器在独立电源模式下具有较低的总谐波失真输出电压,而在并网电源模式下具有较高的功率因数输出电流。提供具有高性能电能质量的交流输出。通过3 kW原型机的实验结果验证了所提出的带有BSC的高性能逆变器的有效性,并且与以前的比例积分控制,比例谐振控制和自适应总滑移相比,表明了所提出的BSC方案的优点。模式控制策略。

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