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A Class of Optimal and Robust Controller Design for Energy Routers in Energy Internet

机译:能源互联网中能量路由器的一类最优鲁棒控制器设计

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In this paper, a class of optimal and robust controller is designed for a typical energy router (ER) within the scenario of an energy Internet (EI) from the control perspective. As the core element of the EI, the considered ER is assumed to have access with photovoltaic (PV) units, wind turbine generators (WTGs), micro-turbines (MTs), fuel cells (FCs), battery energy storage (BES) devices, super capacities (SCs), loads and other ERs. Two control objectives are considered as follows. 1) Since the access of large-scale renewable energy sources (RESs) would lead to excessive DC bus voltage deviation within the ER system, a desired controller shall regulate the voltage deviation effectively. 2) According to the operational principle of EI, when multiple ERs are interconnected, an autonomous power balance of each ER is expected to be achieved with priority. Then the optimal energy dispatch problem shall be considered. When both two problems are considered simultaneously, a mixed robust H2/H control problem is formulated and is solved analytically. Simulations show the usefulness and effectiveness of the proposed scheme.
机译:本文从控制角度出发,针对能源互联网(EI)场景中的典型能源路由器(ER)设计了一类最优且鲁棒的控制器。作为EI的核心元素,假定所考虑的ER可以使用光伏(PV)单元,风力涡轮发电机(WTG),微型涡轮机(MT),燃料电池(FC),电池储能(BES)设备,超大容量(SC),负载和其他ER。如下考虑两个控制目标。 1)由于使用大型可再生能源(RES)会导致ER系统内的直流母线电压偏差过大,因此所需的控制器应有效地调节电压偏差。 2)根据EI的工作原理,当多个ER互连时,可以优先实现每个ER的自主功率平衡。然后,应考虑最佳能量分配问题。同时考虑两个问题时,混合鲁棒H 2 /H 制定控制问题并进行分析解决。仿真表明了该方案的有效性。

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