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An Adaptive-Then-Combine Dynamic State Estimation Considering Renewable Generations in Smart Grids

机译:智能电网中考虑可再生能源的自适应然后组合动态状态估计

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The penetration of renewable distributed energy resources, such as wind turbine, has been dramatically increased in distribution networks. Due to the intermittent property, the wind power generation patterns vary, which may risk distribution network operations. So, it is intrinsically necessary to monitor wind turbines in a distributed way. This paper presents an adaptive-then-combine distributed dynamic approach for monitoring the grid under lossy communication links between the wind turbines and energy management system. First, the wind turbine is represented by a state-space linear model, with sensors deployed to obtain the system state information. Based on the mean squared error principle, an adaptive approach is proposed to estimate the local state information. The global estimation is designed by combining estimation results with weighting factors which are calculated by minimizing the estimation error covariance based on semidefinite programming. Finally, the convergence analysis indicates that the estimation error is gradually decreased, so the estimated state converges to the actual state. The efficacy of the developed approach is verified using the wind turbine and the IEEE 6-bus distribution system.
机译:在配电网络中,风力涡轮机等可再生分布式能源的渗透已大大增加。由于具有间歇性,风力发电方式会有所不同,这可能会给配电网运行带来风险。因此,本质上必须以分布式方式监视风力涡轮机。本文提出了一种自适应然后组合分布式动态方法,用于在风力发电机与能源管理系统之间的有损通信链路下监控电网。首先,用状态空间线性模型表示风力涡轮机,并部署传感器以获取系统状态信息。基于均方误差原理,提出了一种自适应估计局部状态信息的方法。全局估计是通过将估计结果与加权因子相结合而设计的,这些加权因子是通过基于半确定编程将估计误差协方差最小化而计算得到的。最后,收敛分析表明估计误差逐渐减小,因此估计状态收敛到实际状态。使用风力涡轮机和IEEE 6总线配电系统验证了所开发方法的有效性。

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