首页> 外文期刊>IEEE Transactions on Energy Conversion >Distributed Control With Virtual Capacitance for the Voltage Restorations, State of Charge Balancing, and Load Allocations of Heterogeneous Energy Storages in a DC Datacenter Microgrid
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Distributed Control With Virtual Capacitance for the Voltage Restorations, State of Charge Balancing, and Load Allocations of Heterogeneous Energy Storages in a DC Datacenter Microgrid

机译:具有虚拟电容的分布式控制,用于DC数据中心微电网中的电压恢复,电荷平衡状态和异构储能装置的负载分配

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This paper proposes a distributed coordination control strategy for load sharing and energy balancing between heterogeneous energy storages. These control objectives are satisfied through a two-level control structure. At the primary level, the decentralized virtual impedance control, without the requirement of communication links, allocates the low frequency component of the loads to batteries, while the high frequency component is allocated to ultracapacitors. Distributed control strategy, introduced at the secondary level over a sparse communication network, achieves battery state of charge balancing and regulation of the local bus voltages. Two sets of data are exchanged via the communication links, the local bus voltages, and state of charges of batteries. The distributed controller for the restoration of local bus voltages implements an average consensus protocol, while the controller for energy balancing uses a cooperative protocol. In addition, the ultracapacitor voltages are locally restored at a slower time-scale. The proposed control strategy is resilient to communication link failures and features plug-and-play capability. Presented results demonstrate performance of the proposed control strategy for an islanded 380 VDC datacenter with variable loads. Different operating conditions are verified through the RTDS Technologies real-time digital power system simulator using switching converter models and nonlinear battery models.
机译:本文提出了一种分布式协调控制策略,用于异构储能之间的负载分担和能量平衡。通过两级控制结构可以满足这些控制目标。在初级一级,分散虚拟阻抗控制无需通信链路,即可将负载的低频分量分配给电池,而将高频分量分配给超级电容器。在稀疏通信网络上的次级级别上引入的分布式控制策略可实现电池电量平衡和本地总线电压调节的状态。通过通讯链接交换两组数据,本地总线电压和电池的充电状态。用于恢复本地总线电压的分布式控制器执行平均共识协议,而用于能量平衡的控制器使用协作协议。另外,超级电容器电压在较慢的时间范围内局部恢复。所提出的控制策略可应对通信链路故障,并具有即插即用功能。呈现的结果证明了针对具有可变负载的孤岛380 VDC数据中心所提出的控制策略的性能。使用开关转换器模型和非线性电池模型,通过RTDS Technologies实时数字电源系统模拟器验证了不同的工作条件。

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