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Coordinated Control of Energy Storage in Networked Microgrids under Unpredicted Load Demands

机译:不可预测的负荷需求下网络化微电网中储能的协调控制

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In this paper a nonlinear control design for power balancing in networked microgrids using energy storage devices is presented. Each microgrid is considered to be interfaced to the distribution feeder though a solid-state transformer (SST). The internal duty cycle based controllers of each SST ensures stable regulation of power commands during normal operation. But problem arises when a sudden change in load or generation occurs in any microgrid in a completely unpredicted way in between the time instants at which the SSTs receive their power setpoints. In such a case, the energy storage unit in that microgrid must produce or absorb the deficit power. The challenge lies in designing a suitable regulator for this purpose owing to the nonlinearity of the battery model and its coupling with the nonlinear SST dynamics. We design an input-output linearization based controller, and show that it guarantees closed-loop stability for either the autonomous operation of a SST or co-operative operation between SSTs, in which each SST assist a given SST whose storage capacity is insufficient to serve the unpredicted load. The design is verified using the IEEE 34-bus distribution system with nine SST-driven microgrids.
机译:本文介绍了使用能量存储装置的网络微电网电力平衡的非线性控制设计。通过固态变压器(SST),认为每个微电网被视为与分配馈线接口。基于内部占空比的基于循环的每个SST的控制器确保在正常操作期间稳定地调节电源命令。但是,当在SSTS接收到其电力设定值时,以完全不受预视的方式发生负载或发电的突然变化时出现问题。在这种情况下,在该微电网中的能量存储单元必须产生或吸收缺陷功率。由于电池模型的非线性及其与非线性SST动态的耦合,因此挑战在于设计合适的稳压器以此目的是为了实现。我们设计基于输入输出线性化的控制器,并表明它保证了SST之间SST或合作操作的自主操作的闭环稳定性,其中每个SST辅助给定SST其存储容量不足以服务不受预测的负荷。使用具有九个SST驱动的Microgrids的IEEE 34-Bus分配系统来验证设计。

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