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首页> 外文期刊>IEEE transactions on automation science and engineering >Two-Level Hierarchical Hybrid Control for Smart Power System
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Two-Level Hierarchical Hybrid Control for Smart Power System

机译:智能电力系统的二级分层混合控制

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摘要

This paper studies the smart control issue for large power systems to effectively solve the problems of security, stability, and economical efficiency. A control scheme called as hierarchical hybrid control is proposed versus the hierarchical structure and hybrid dynamics of large power systems. A novel hybrid model is first founded to clearly explain the interactive hybrid behaviors of the power systems during significant disturbances. On the basis of the model, the hybrid control is proposed, which consists of upper level control strategies (including logic control commands for discrete events and energy management strategies) and lower level continuous controls for component units. The upper level control strategies are responsible for switching operating modes for the purpose of security operation following a significant disturbance, as well as power assignment for the economical efficiency of operation, and the lower level continuous controllers are responsible for regulating dynamic stability of the systems. The effectiveness of the proposed hybrid control is demonstrated through simulation examples.
机译:本文研究了大型电力系统的智能控制问题,以有效解决安全性,稳定性和经济性问题。针对大型电力系统的分层结构和混合动力,提出了一种称为分层混合控制的控制方案。首先建立了一种新型的混合模型,以清楚地说明电力系统在重大扰动期间的交互式混合行为。在该模型的基础上,提出了混合控制,该混合控制包括上级控制策略(包括离散事件的逻辑控制命令和能量管理策略)和下级单元的连续控制。上层控制策略负责在严重干扰后出于安全操作的目的切换操作模式,并为经济上的操作效率分配功率,下层连续控制器负责调节系统的动态稳定性。仿真实例证明了所提出的混合控制的有效性。

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