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Wind/PV/Battery micro-grid hybrid simulation research on operation control based on RTDS and controller

机译:基于RTDS和控制器的风/光伏/电池微电网混合动力控制仿真研究

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Wind/PV/Battery micro-grid hybrid simulation research on operational control is an important link in the development of renewable energy power generation technology. This paper establishes a model of micro power unit control system based on RTDS and a digital physical hybrid simulation model of micro power unit control system based on RTDS and controller, constructs a Wind/PV/Battery micro-grid experimental platform, and its electrical topology structure, system structure and communication architecture are given. In this paper, switching and operational control strategy of micro-grid are proposed, and through experiment to verify. This paper first verifies the feasibility of the digital physical hybrid simulation, and then designs a variety of conditions for simulation of grid-connected/islanded mode switching. The results show that micro grid experimental platform can be in a state of equilibrium under different conditions and keep running smoothly during the adjustment process, the effectiveness of the proposed control strategy is verified. Through research and construction of this platform, the performance of the control strategy can be tested and debugged on the physical platform, and the control parameters can be modified in real time, at the same time, it provides important practical basis for practical engineering design.
机译:风能/光伏/电池微电网混合运行控制仿真研究是可再生能源发电技术发展的重要环节。建立了基于RTDS的微机控制系统模型,以及基于RTDS和控制器的微机控制系统数字物理混合仿真模型,构建了风/光伏/电池微网实验平台及其电气拓扑给出了系统的结构,系统结构和通信体系结构。本文提出了微电网的切换和运行控制策略,并通过实验进行了验证。本文首先验证了数字物理混合仿真的可行性,然后设计了并网/孤岛模式切换仿真的各种条件。结果表明,微电网实验平台可以在不同条件下处于平衡状态,并且在调整过程中保持平稳运行,验证了所提出的控制策略的有效性。通过对该平台的研究和构建,可以在物理平台上对控制策略的性能进行测试和调试,并可以实时修改控制参数,为实际工程设计提供了重要的实践依据。

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