Abstract
The microgrid is an emerging trend in modern power systems. Microgrids consist of controllable power sources, storage, and loads. An elaborate control infrastructure is established to regulate and synchronize the interaction of these components. The control scheme is divided into a hierarchy of several layers, where each layer is composed of multi-agents performing their dedicated functions and arriving at a consensus of corrective values. Lateral and horizontal interaction of such multi-agents forms a comprehensive hierarchical control structure that regulates the microgrid operation to achieve a compendium of objectives, including power sharing, voltage, and frequency regulation. The success of a multi-agent-based control scheme is dependent on the health of the communication media that is used to relay measurements and control signals. Delays in the transmission of control signals result in an overall deterioration of the control performance and non-convergence. This paper proposes novel multi-agent moving average estimators to mitigate the effect of latent communication links and establishes a hierarchical control scheme incorporating these average estimators to accurately arrive at system values during communication delays. Mathematical models are established for the complete microgrid system to test the stability of the proposed method against conventional consensus-based methods. Case-wise simulation studies and lab-scale experimental verification further establish the efficacy and superiority of the proposed control scheme in comparison with other conventionally used control methods.
Subject
Management, Monitoring, Policy and Law,Renewable Energy, Sustainability and the Environment,Geography, Planning and Development,Building and Construction
Reference43 articles.
1. Advanced Control Architectures for Intelligent Microgridspart i: Decentralized and Hierarchical Control;Guerrero;IEEE Trans. Ind. Electron.,2013
2. Ramos, F., Pinheiro, A., Nascimento, R., de Araujo Silva Junior, W., Mohamed, M.A., Annuk, A., and Marinho, M.H. (2022). Development of Operation Strategy for Battery Energy Storage System into Hybrid AC Microgrids. Sustainability, 14.
3. A relaxed consensus plus innovation based effective negotiation approach for energy cooperation between smart grid and microgrid;Mohamed;Energy,2022
4. Coordinated Control of the Conventional Units, Wind Power, and Battery Energy Storage System for Effective Support in the Frequency Regulation Service;Abouzeid;Int. Trans. Electr. Energy Syst.,2019
5. Framework for Multipoint Optimal Reactive Power Compensation in Radial Distribution System with High Distributed Generation Penetration;Bharti;Int. Trans. Electr. Energy Syst.,2019
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