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Robust Controller Design for Energy Router in Energy Internet via Mixed $mathrm{H}_{2}/mathrm{H}infty$ Control Technique

机译:通过混合 $ mathrm {h} _ {2} / mathrm {h}×{h} idty $ 控制技术的能量路由器设计

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This paper proposes a new robust controller design of an energy router (ER) system for frequency regulation within an energy Internet (EI) scenario. The studied ER is assumed to be connected with photovoltaic (PV) units, wind turbine generators (WTGs), electrolyzers (ESs), micro-turbines (MTs), fuel cells (FCs), plug in hybrid electric vehicles (PHEVs), loads and one more ER. The intermittent power generation from PV units and the random power consumption by PHEVs causes severe frequency oscillation in the considered ER. To alleviate frequency deviation, a proportional integral (PI) controller inside the ER device is designed. For the considered ER system, the inverse output multiplicative perturbation is considered when formulating the pmbH∞ performance, whereas both minimizing the tracking error and avoiding the situation of over-control are formulated as the H2 performance. Then, our ER control issue is transformed into a mixed pmbH2/pmbH∞ control problem which is solved by the particle swarm optimization (PSO) algorithm. Finally, numerical simulations illustrating the feasibility of the proposed methods are provided.
机译:本文提出了一种新的强大的能量路由器(ER)系统的强大控制器设计,用于在能量互联网(EI)场景中的频率调节系统。假设研究的ER与光伏(PV)单元连接,风力涡轮发电机(WTG),电解器(ESS),微涡轮机(MTS),燃料电池(FCS),插入混合动力电动车辆(PHEV),负载还有一个呃。 PV单元的间歇发电和PHEV的随机功耗导致考虑的ER中的严重频率振荡。为了缓解频率偏差,设计了ER设备内的比例积分(PI)控制器。对于被考虑的ER系统,在制定PMBH∞性能时考虑逆输出乘法扰动,而最小化跟踪误差并避免过控制的情况被制定为H2性能。然后,我们的ER控制问题被转换为混合 PMBH2 / PMBH∞控制问题,该控制问题由粒子群优化(PSO)算法解决。最后,提供了说明所提出的方法的可行性的数值模拟。

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