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Control strategy for inverter in a micro-grid under unbalanced grid condition

机译:电网不平衡条件下微网逆变器的控制策略

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Micro-grid is gaining momentum as it addresses grave concerns like climate change and energy security. This paper presents power flow control algorithm for voltage source inverter used in a micro-grid under unbalanced grid conditions. Energy Storage and local energy source are the key components of the micro-grid that is required to help stabilize grid. There is a variety of technologies that can be used to store energy, but all these technologies have a controllable power electronic interface like inverters to mains (IEC 60038 Standard, Voltage: 400V, 50Hz, three-phase Supply). The control algorithm for inverter in this paper is based on dual vector current control. It gives robust operation of the inverter under generalized unbalanced input conditions. The control algorithm is based on the separate regulation of positive and negative sequence components, allowing the delivery of constant active power to the mains, and suppressing twice grid frequency oscillations. The presented control scheme improves voltage profile of the micro-grid. The control scheme is implemented in MATLAB/Simulink model and simulation results are presented. The results shows effectiveness of control scheme and are found in accordance with IEC standards and Engineering Recommendation P29.
机译:微电网正在解决诸如气候变化和能源安全等严重问题,因此势头强劲。本文提出了在不平衡电网条件下微电网中使用的电压源逆变器的功率流控制算法。储能和本地能源是微电网的关键组成部分,有助于稳定电网。可以使用多种技术来存储能量,但是所有这些技术都具有可控制的电源电子接口,例如逆变器与市电(IEC 60038标准,电压:400V,50Hz,三相电源)。本文的逆变器控制算法基于双矢量电流控制。在一般的不平衡输入条件下,它可以使逆变器稳定运行。该控制算法基于正序和负序分量的单独调节,从而允许向电网提供恒定的有功功率,并抑制两倍的电网频率振荡。提出的控制方案改善了微电网的电压分布。该控制方案在MATLAB / Simulink模型中实现,并给出了仿真结果。结果显示了控制方案的有效性,并且符合IEC标准和工程建议P29。

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