Optimal DC Voltage Control in Multi-Terminal HVDC Network: Modeling and Scenarios

S. Sayed, A. Massoud
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引用次数: 3

Abstract

Efficient and balanced power transfer with minimum transmission losses in Multi-Terminal High-Voltage DC (MTDC) network is managed by the hierarchical control layers. A combination of decentralized DC voltage droop control and centralized Optimal Power Flow (OPF) controller can maintain the MTDC network power flow with minimum power losses. This paper presents scenarios of droop-controlled radial MTDC network with the objective of minimizing the DC grid transmission losses supported with average value modeling and optimization approach. The droop characteristics are tuned for effective power-sharing among the receiving nodes. The OPF controller maintains the network operation within the allowed operational constraints during normal network operation (i.e., in case of variable power injection to the MTDC network. The simulation results of the MTDC network average value modeling and OPF are presented with the aid of the Matlab/Simulink platform.
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多端高压直流网络中最优直流电压控制:建模与场景
在多终端高压直流(MTDC)网络中,通过分层控制层实现高效、均衡、传输损耗最小的电力传输。将分散式直流电压降控制与集中式最优潮流控制相结合,可以使MTDC网络的潮流保持在最小的功率损耗下。本文提出了以直流电网传输损耗最小为目标的下垂控制径向MTDC网络的方案,并采用平均值建模和优化方法。下垂特性被调整为在接收节点之间有效的功率共享。OPF控制器在网络正常运行期间(即在向MTDC网络注入可变功率的情况下)保持网络运行在允许的运行约束范围内。利用Matlab/Simulink平台,给出了MTDC网络均值建模和OPF的仿真结果。
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