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Real-time energy coordinated and balance control strategies for microgrid with photovoltaic generators

机译:光伏发电机微电网的实时能量协调和平衡控制策略

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摘要

A typical microgrid system comprises photovoltaic generator which usually operates at both grid-connected and intentionally islanding operation modes. In terms of such operation characteristics of the microgrid, this paper proposes an active power control strategy dynamically to balance the energy output and consumption in the microgrid. By the control strategy, the photovoltaic generators may actively curtail their output energy instead of maximum output power by MPPT when the total microgrid system has surplus energy specifically at intentionally islanding operation mode. In order to ensure the stability of the voltage amplitude and frequency at PCC and achieve energy real-time coordinated and balance control, a method by real-time calculating the change of load power according to P-f and Q-V drooping relationship, then assigning to each micro-source by energy dispatching layer is proposed. The simulation results prove that proposed active power control strategy and coordinated method operates effectively to dynamically manage energy of the microgrid.
机译:典型的微电网系统包括光伏发电机,该光伏发电机通常以并网运行和有意孤岛运行两种模式运行。针对微电网的这种运行特性,本文提出了一种动态的有功功率控制策略,以平衡微电网的能量输出和能量消耗。通过控制策略,当整个微电网系统特别是在有意孤岛运行模式下具有过剩能量时,光伏发电机可以通过MPPT主动减少其输出能量,而不是最大输出功率。为了确保PCC上电压幅度和频率的稳定并实现能量的实时协调和平衡控制,一种方法是根据Pf和QV下降关系实时计算负载功率的变化,然后分配给每个微控制器。提出了能量分配层的能量来源。仿真结果表明,提出的有功功率控制策略和协调方法可以有效地动态管理微电网的能量。

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