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Hybrid Interconnection of Iterative Bidding and Power Network Dynamics for Frequency Regulation and Optimal Dispatch

机译:迭代竞标和电网动力学频率​​调节和最优派遣的混合互连

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This paper considers a real-time electricity market involving an independent system operator (ISO) and a group of strategic generators. The ISO operates a market, where generators bid prices at which they are willing to provide power. The ISO makes power generation assignments with the goal of solving the economic dispatch problem and regulating the network frequency. We propose a multirate hybrid algorithm for bidding and market clearing that combines the discrete nature of iterative bidding with the continuous nature of the frequency evolution in the power network. We establish sufficient upper bounds on the interevent times that guarantee that the proposed algorithm asymptotically converges to an equilibrium corresponding to an efficient Nash equilibrium and zero frequency deviation. Our technical analysis builds on the characterization of the robustness properties of the continuous-time version of the bidding update process interconnected with the power network dynamics via the identification of a novel local input-to-state Lyapunov function. Simulations on the IEEE 14-bus system illustrate our results.
机译:本文考虑了涉及独立系统运营商(ISO)和一组战略发电机的实时电力市场。 ISO运营市场,发电机竞标价格愿意提供权力。 ISO使发电分配具有解决经济调度问题并调节网络频率的目标。我们提出了一种用于竞标和市场清算的多型混合算法,将迭代竞标的离散性与电网中频率演化的连续性相结合。我们在默认的时间内建立足够的上限,以保证所提出的算法渐近地收敛于对应于高效纳什平衡和零频率偏差的平衡。我们的技术分析构建了通过识别新的局部输入到状态Lyapunov函数互联的竞争更新过程的连续时间版本的稳健性属性的表征。 IEEE 14-Bus系统的模拟说明了我们的结果。

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