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Distributed Frequency Control with Operational Constraints, Part II: Network Power Balance

机译:具有操作约束的分布式频率控制,第二部分:网络功率平衡

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摘要

In Part I of this paper we propose a decentralized optimal frequency control of multi-area power system with operational constraints, where the tie-line powers remain unchanged in the steady state and the power mismatch is balanced within individual control areas. In Part II of the paper, we propose a distributed controller for optimal frequency control in the network power balance case, where the power mismatch is balanced over the whole system. With the proposed controller, the tie-line powers remain within the acceptable range at equilibrium, while the regulation capacity constraints are satisfied both at equilibrium and during transient. It is revealed that the closed-loop system with the proposed controller carries out primal-dual updates with saturation for solving an associated optimization problem. To cope with discontinuous dynamics of the closed-loop system, we deploy the invariance principle for nonpathological Lyapunov function to prove its asymptotic stability. Simulation results are provided to show the effectiveness of our controller.
机译:在本文的第一部分中,我们提出了具有操作约束的多区域动力系统的分散的最佳频率控制,其中连接线功率在稳态中保持不变,并且功率不匹配在各个控制区域内平衡。在本文的第二部分中,我们提出了一个分布式控制器,用于网络功率平衡情况下的最佳频率控制,其中功率不匹配在整个系统上平衡。利用所提出的控制器,扎线功率保持在平衡的可接受范围内,而调节能力约束在平衡和瞬态期间。据透露,闭环系统与所提出的控制器执行原始 - 双重更新,以解决相关优化问题。为了应对闭环系统的不连续动态,我们部署了不流氓Lyapunov功能的不变原理,以证明其渐近稳定性。提供了仿真结果以显示我们控制器的有效性。

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