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首页> 外文期刊>Power Systems, IEEE Transactions on >Model-Predictive Cascade Mitigation in Electric Power Systems With Storage and Renewables—Part I: Theory and Implementation
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Model-Predictive Cascade Mitigation in Electric Power Systems With Storage and Renewables—Part I: Theory and Implementation

机译:具有存储和可再生能源的电力系统中的模型预测级联缓解—第一部分:理论与实现

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摘要

A novel model predictive control (MPC) scheme is developed for mitigating the effects of severe line-overload disturbances in electrical power systems. A piece-wise linear convex approximation of line losses is employed to model the effect of transmission line power flow on conductor temperatures. Control is achieved through a receding-horizon model predictive control (MPC) strategy which alleviates line temperature overloads and thereby prevents the propagation of outages. The MPC strategy adjusts line flows by rescheduling generation, energy storage and controllable load, while taking into account ramp-rate limits and network limitations. In Part II of this paper, the MPC strategy is illustrated through simulation of the IEEE RTS-96 network, augmented to incorporate energy storage and renewable generation.
机译:开发了一种新颖的模型预测控制(MPC)方案,以减轻电力系统中严重的线路过载干扰的影响。采用线损的分段线性凸近似来模拟传输线功率流对导体温度的影响。通过后向水平模型预测控制(MPC)策略可实现控制,该策略可减轻线路温度过载,从而防止中断的蔓延。 MPC策略通过重新计划发电,能量存储和可控制的负载来调整线路流量,同时考虑到斜坡速率限制和网络限制。在本文的第二部分中,通过对IEEE RTS-96网络进行仿真来说明MPC策略,并对其进行了增强以结合能量存储和可再生能源发电。

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