A distributed solution approach to centralized emergency voltage control
Marco Beccuti, Manfred Morari
Abstract
Marco Beccuti, Manfred Morari
Abstract
Voltage control and stability issues typically involve large networks with structurally diverse components extending over considerable areas and interconnecting different system grids and operators. In such a setting it is of the utmost importance to be able to effectively coordinate the control actions among the various operators whilst preserving sensitive local system data that regional operators are not willing to disclose. In view of these two discording factors centralized and decentralized control schemes respectively yield advantages and drawbacks, as the former require the global system data to be accessible whereas the latter may prove to be difficult to effectively implement if realistic performance requirements and constraints are imposed. The present paper therefore proposes a centralized control scheme that is solved however in a distributed fashion, thus reaping the benefits of both approaches: the control problem is global, therefore intrinsically more reliable and comprehensive, but only local information is employed to achieve the overall optimum control input
OpenAlex reports 16 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Voltage control and stability issues typically involve large networks with structurally diverse components extending over considerable areas and interconnecting different system grids and operators. In such a setting it is of the utmost importance to be able to effectively coordinate the control actions among the various operators whilst preserving sensitive local system data that regional operators are not willing to disclose. In view of these two discording factors centralized and decentralized control schemes respectively yield advantages and drawbacks, as the former require the global system data to be accessible whereas the latter may prove to be difficult to effectively implement if realistic performance requirements and constraints are imposed. The present paper therefore proposes a centralized control scheme that is solved however in a distributed fashion, thus reaping the benefits of both approaches: the control problem is global, therefore intrinsically more reliable and comprehensive, but only local information is employed to achieve the overall optimum control input
Key concepts: Computer science, Control (management), Scheme (mathematics), Distributed computing, Decentralised system, Stability (learning theory), Control system, Control engineering