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Energy management system (EMS) for real-time operation of DC microgrids with multiple slack terminals

机译:能量管理系统(EMS),用于多个松弛端子的DC微电网的实时操作

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DC microgrid with multiple slack terminals has higher system reliability in case of slack terminal outage and communication failure. However, system bus voltage deviation from the nominal value and power sharing error are the main drawbacks of the droop-based distributed control. A three-level Energy Management System (EMS) is proposed in this paper to ensure both fast response and accurate control of the multiple-slack-terminal DC microgrid. All Energy Storages (ESs) are scheduled to operate in voltage regulation mode in level I control. The bus voltage regulation and power sharing among ESs are realized based on local bus voltage autonomously. In level II, bus voltage restoration and power sharing compensation are implemented to eliminate voltage deviation and power sharing error accordingly. Level III control takes the constraints of ESs' power capacity and energy capacity into consideration. Load shedding and generation curtailment are to be activated based on the real-time system net power and ESs' State of Charge (SoC). Case studies based on MATLAB simulation were carried out to verify the effectiveness of proposed methods.
机译:DC MicroGrid具有多个Slack端子的系统可靠性在松弛的终端中断和通信故障时具有更高的系统可靠性。然而,来自标称值和功率共享错误的系统总线电压偏差是基于下垂的分布式控制的主要缺点。本文提出了一种三级能源管理系统(EMS),以确保对多松弛末端DC微电网的快速响应和准确控制。所有能源存储(ESS)都计划在I级控制中的电压调节模式下运行。基于自动局部总线电压实现ESS之间的总线电压调节和电力共享。在II级,实现了总线恢复和功率共享补偿以相应地消除电压偏差和功率共享误差。 III级控制考虑了ESS'功率容量和能量能力的约束。负载脱落和发电缩减将根据实时系统净功率和ESS的充电状态(SOC)进行激活。基于MATLAB模拟的案例研究进行了验证所提出的方法的有效性。

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