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Design and Real-Time Implementation of a Centralized Microgrid Control System With Rule-Based Dispatch and Seamless Transition Function

机译:具有规则的派遣和无缝转换功能的集中式微电网控制系统的设计与实时实现

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摘要

With reference to the newly released microgrid standards, design and real-time implementation of a centralized microgrid control system is presented in this article. In the grid-connected mode, the utility grid will provide the voltage and frequency reference at the point of connection. The assets within the microgrid will follow power command references provided by the control system. In the islanded mode, the energy storage system (ESS) can provide the voltage and frequency reference to all other generators. Based on the state-of-charge of the ESS, a rule-based dispatch is proposed, with priority given to diesel generator and then the storage in the middle state of charge range. To alleviate power fluctuations, meet smooth planned islanding requirement, and compensate for the feeder losses ignored in dispatch algorithm, a supplementary slack-bus power control based on closed-loop feedback and first-order filter is proposed. The potential of the storage system in firming short-time power fluctuation and providing long-term load shifting capabilities is exploited. An emergency dispatch function for unplanned islanding considering the speed of response limitation of a diesel generator is also proposed. The proposed control strategy is implemented and tested on a controller hardware-in-the-loop test bench. It demonstrates the capability of the control system to reduce load shedding and renewable curtailment, and to implement power management at the point of interconnection.
机译:参考新释放的微电网标准,本文提出了集中式微电网控制系统的设计和实时实现。在网格连接模式下,实用电网将在连接点提供电压和频率参考。 MicroGrid中的资产将遵循控制系统提供的电源命令参考。在岛屿模式下,能量存储系统(ESS)可以为所有其他发电机提供电压和频率。基于ESS的国家,提出了一种基于规则的调度,优先考虑柴油发生器,然后在充电范围的中间状态下存储。为了减轻电力波动,满足平稳的计划岛屿要求,并补偿在调度算法中忽略的馈线损耗,提出了一种基于闭环反馈和一阶滤波器的补充SLACK-BUS功率控制。利用储存系统在闪烁短时功率波动和提供长期负载转换能力中的潜力。考虑到柴油发电机的响应速度,还提出了对柴油发电机的响应速度的紧急调度功能。在控制器硬件循环测试台上实现和测试了所提出的控制策略。它展示了控制系统的能力,以减少负载脱落和可再生缩减,并在互连点实现电源管理。

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