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首页> 外文期刊>International journal on engineering applications >Synchronization of Open Systems: Application to the Lossy Power Grid
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Synchronization of Open Systems: Application to the Lossy Power Grid

机译:开放系统的同步:应用于有损电网的应用

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摘要

The transient stability assessment of multi-machine power systems has been a deeply explored research area in the power system community. The nonlinear nature of the evolving dynamics warrants distinctive control approaches, of which, the time domain simulations and Lyapunov based methods have been majorly applied for assessment and estimating the regions of attraction. However, these methods find limitations when applied to the lossy power grid and demand different modeling procedures. Treating the lossy grid as an open system aids in addressing the challenging problems of assessing their stability and achieving control. In this context, this paper explores the synchronization of open systems through the first order non-uniform Kuramoto model, which renders equivalence between rotor angle stability and phase synchronization of coupled oscillators. This paper investigates the distributed and decentralized control architectures for lossy networks and highlights the contexts under which they are applicable. The mean field Kuramoto model is central to the application of distributed control, whereas a generic framework for developing potential functions using notions of passivity to exercise decentralized control is also discussed.
机译:多机动力系统的瞬态稳定性评估是电力系统社区中的深度探索的研究区域。演化动力学的非线性性质认证了独特的控制方法,其中,主要申请了时域模拟和基于Lyapunov的方法进行了评估和估算吸引力区域。但是,这些方法在应用于有损电网时找到限制并要求不同的建模程序。作为开放式系统辅助处理损失网格,以解决评估其稳定性和实现控制的挑战性问题。在这种情况下,本文探讨了开放系统通过第一阶非均匀kuramoto模型的同步,其呈现转子角度稳定性与耦合振荡器的相位同步之间的等效。本文调查了有损网络的分布式和分散控制架构,并突出了它们适用的背景。平均现场Kuramoto模型是分布式控制的应用中的核心,而使用与锻炼分散控制的概念开发潜在功能的通用框架。

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