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APS -APS March Meeting 2017 - Event - Control of coupled oscillator networks with application to microgrid technologies

机译:APS -APS 3月会议2017年 - 事件 - 耦合振荡器网络应用于微电网技术的控制

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The control of complex systems and network-coupled dynamical systems is a topic of vital theoretical importance in mathematics and physics with a wide range of applications in engineering and various other sciences. Motivated by recent research into smart grid technologies, we study the control of synchronization and consider the important case of networks of coupled phase oscillators with nonlinear interactions---a paradigmatic example that has guided our understanding of self-organization for decades. We develop a method for control based on identifying and stabilizing problematic oscillators, resulting in a stable spectrum of eigenvalues, and in turn a linearly stable syn- chronized state. The amount of control, that is, number of oscillators, required to stabilize the network is primarily dictated by the coupling strength, dynamical heterogeneity, and mean degree of the network, and depends little on the structural heterogeneity of the network itself.
机译:复杂系统和网络耦合动力系统的控制是数学和物理学中具有重要理论重要性的主题,具有各种工程和各种其他科学的应用。近期研究智能电网技术的激励,我们研究了对同步的控制,并考虑了具有非线性互动的耦合阶段振荡器网络的重要情况---一种宗旨,导致我们对自组织的理解几十年。我们基于识别和稳定问题振荡器开发一种控制方法,从而产生稳定的特征值,并且又是线性稳定的合格状态。稳定网络所需的控制量,即振荡器的数量主要由网络的耦合强度,动态异质性和平均程度决定,并且缺少网络本身的结构异质性。

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