We investigate the performance and robustness of distributed averaging integral controllers used in the optimal frequency regulation of power networks. We construct a strict Lyapunov function that allows us to quantify the exponential convergence rate of the closed-loop system. As an application, we study the stability of the system in the presence of disruptions to the controllers' communication network, and investigate how the convergence rate is affected by these disruptions. (C) 2018 Elsevier Ltd. All rights reserved.</p
We investigate the robustness of the so-called leaky integral frequency controller for the power net...
Frequency restoration in power systems is conventionally performed by broadcasting a centralized sig...
Frequency restoration in power systems is conventionally performed by broadcasting a centralized sig...
We investigate the performance and robustness of distributed averaging integral controllers used in ...
We investigate the performance and robustness of distributed averaging integral controllers used in ...
We investigate the performance and robustness of distributed averaging integral controllers used in ...
We investigate the performance and robustness of distributed averaging integral controllers used in ...
We investigate the performance and robustness of distributed averaging integral controllers used in ...
We investigate the performance and robustness of distributed averaging integral controllers used in ...
We investigate the robustness of distributed averaging integral controllers for optimal frequency re...
We investigate the robustness of distributed averaging integral controllers for optimal frequency re...
We investigate the robustness of distributed averaging integral controllers for optimal frequency re...
We investigate the robustness of distributed averaging integral controllers for optimal frequency re...
We investigate the robustness of existing control strategies for economically optimal frequency regu...
We investigate the robustness of the so-called leaky integral frequency controller for the power net...
We investigate the robustness of the so-called leaky integral frequency controller for the power net...
Frequency restoration in power systems is conventionally performed by broadcasting a centralized sig...
Frequency restoration in power systems is conventionally performed by broadcasting a centralized sig...
We investigate the performance and robustness of distributed averaging integral controllers used in ...
We investigate the performance and robustness of distributed averaging integral controllers used in ...
We investigate the performance and robustness of distributed averaging integral controllers used in ...
We investigate the performance and robustness of distributed averaging integral controllers used in ...
We investigate the performance and robustness of distributed averaging integral controllers used in ...
We investigate the performance and robustness of distributed averaging integral controllers used in ...
We investigate the robustness of distributed averaging integral controllers for optimal frequency re...
We investigate the robustness of distributed averaging integral controllers for optimal frequency re...
We investigate the robustness of distributed averaging integral controllers for optimal frequency re...
We investigate the robustness of distributed averaging integral controllers for optimal frequency re...
We investigate the robustness of existing control strategies for economically optimal frequency regu...
We investigate the robustness of the so-called leaky integral frequency controller for the power net...
We investigate the robustness of the so-called leaky integral frequency controller for the power net...
Frequency restoration in power systems is conventionally performed by broadcasting a centralized sig...
Frequency restoration in power systems is conventionally performed by broadcasting a centralized sig...