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首页> 外文期刊>Power Systems, IEEE Transactions on >Power Management and Power Flow Control With Back-to-Back Converters in a Utility Connected Microgrid
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Power Management and Power Flow Control With Back-to-Back Converters in a Utility Connected Microgrid

机译:实用程序连接的微电网中具有背靠背转换器的电源管理和潮流控制

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This paper proposes a method for power flow control between utility and microgrid through back-to-back converters, which facilitates desired real and reactive power flow between utility and microgrid. In the proposed control strategy, the system can run in two different modes depending on the power requirement in the microgrid. In mode-1, specified amount of real and reactive power are shared between the utility and the microgrid through the back-to-back converters. Mode-2 is invoked when the power that can be supplied by the distributed generators (DGs) in the microgrid reaches its maximum limit. In such a case, the rest of the power demand of the microgrid has to be supplied by the utility. An arrangement between DGs in the microgrid is proposed to achieve load sharing in both grid connected and islanded modes. The back-to-back converters also provide total frequency isolation between the utility and the microgrid. It is shown that the voltage or frequency fluctuation in the utility side has no impact on voltage or power in microgrid side. Proper relay-breaker operation coordination is proposed during fault along with the blocking of the back-to-back converters for seamless resynchronization. Both impedance and motor type loads are considered to verify the system stability. The impact of dc side voltage fluctuation of the DGs and DG tripping on power sharing is also investigated. The efficacy of the proposed control arrangement has been validated through simulation for various operating conditions. The model of the microgrid power system is simulated in PSCAD.
机译:本文提出了一种通过背对背转换器控制公用事业和微电网之间的潮流的方法,该方法有助于在公用事业和微电网之间实现理想的有功和无功功率流。在提出的控制策略中,系统可以根据微电网中的功率要求以两种不同的模式运行。在模式1中,通过背对背转换器在公用事业和微电网之间共享指定量的有功和无功功率。当微电网中的分布式发电机(DG)可以提供的功率达到其最大限制时,将调用模式2。在这种情况下,微电网的其余电力需求必须由公用事业公司提供。提出了微电网中DG之间的布置,以实现并网和孤岛模式下的负载共享。背对背转换器还可以在公用事业和微电网之间提供总频率隔离。结果表明,市电侧的电压或频率波动对微电网侧的电压或功率没有影响。在故障期间提出了正确的继电器-断路器操作协调,并提出了对背靠背转换器的阻塞,以实现无缝的重新同步。阻抗和电动机类型的负载都可以用来验证系统的稳定性。还研究了DG的直流侧电压波动和DG跳闸对功率共享的影响。所提出的控制装置的功效已经通过各种工况的仿真得到了验证。在PSCAD中模拟了微电网电力系统的模型。

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