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A distributed economic control and transition between economic and non-economic operation in islanded microgrids

机译:岛上微电网的分布式经济控制和经济与非经济运行之间的过渡

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In islanded microgrids, traditional droop control tends to make the total operating costs higher as the power is distributed by capacity ratios of distributed energy resources (DERs). According to equal increment rate criteria, to minimize the whole expenses, an interesting marginal costs-based economic droop control is proposed in this paper, and the active power can be distributed by identical marginal costs among DERs under economic droop control. If some DERs have arrived at the maximum or minimum power, consensus-based "virtual" controller is applied to make marginal costs still be the same among the rest of DERs. Moreover, distributed secondary frequency controller (DSFC) is proposed to rapidly restore system frequency to the nominal value. As an ancillary service, the whole design can easily realize the transition between economic and non-economic operation only by altering the type of droop control. The above controllers only need to interact with neighbor DERs by sparse communication network, so that eliminating the necessity of a central controller. An islanded microgrid incorporating renewable generators, storage devices and conventional generators are presented to verify the effectiveness of the above controllers. Simulation results show that the proposed controllers can successfully make islanded microgrids realize economic operation and the above transition. (C) 2018 Elsevier B.V. All rights reserved.
机译:在孤岛微电网中,由于功率是通过分布式能源的容量比(DER)进行分配的,因此传统的下垂控制往往会使总运行成本更高。根据等价率准则,为使总支出最小,提出了一种有趣的基于边际成本的经济下垂控制,在有经济下垂控制的分布式能源中,有功功率可以由相同的边际成本分配。如果某些DER已达到最大或最小功率,则将应用基于共识的“虚拟”控制器,以使其余DER中的边际成本仍然相同。此外,提出了分布式次级频率控制器(DSFC)以将系统频率快速恢复到标称值。作为辅助服务,整个设计仅需更改下垂控制的类型即可轻松实现经济运行与非经济运行之间的转换。上述控制器仅需要通过稀疏通信网络与邻居DER交互,从而消除了中央控制器的必要性。提出了一种结合了可再生发电机,存储设备和常规发电机的孤岛微电网,以验证上述控制器的有效性。仿真结果表明,所提出的控制器能够成功地使孤岛微电网实现经济运行和上述过渡。 (C)2018 Elsevier B.V.保留所有权利。

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