Coordination of Distributed Energy Resources in Microgrids
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Coordination of Distributed Energy Resources in Microgrids: Optimisation, control, and hardware-in-the-loop validation

Coordination of Distributed Energy Resources in Microgrids: Optimisation, control, and hardware-in-the-loop validation

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International Edition


About the Book

Coordination of Distributed Energy Resources in Microgrids: Optimisation, control, and hardware-in-the-loop validation provides a structured overview of research into techniques for managing microgrids with distributed energy resources (DERs). The DERs including distributed generators, energy storage systems, and flexible loads are posing both challenges and opportunities to microgrids' security, planning, operation, and control. Advanced operation and control techniques are needed to coordinate these components in the microgrids and maintain power quality, as well as keeping the system economically feasible. This book is for researchers and students in the area of smart grids, power engineering, and control engineering, as well as for advanced students, transmission network and grid operators. It focuses on cutting-edge techniques for secure, economic, and robust operation and control of microgrids. Effective coordination of DERs on both temporal and spatial scales are introduced in detail. Topics covered include comprehensive mathematical models of DERs and microgrids, sizing and siting of DERs under uncertainties, stochastic and robust optimisation for active and reactive power dispatch of DERs in microgrids, distributed coordinated control, and hardware-in-the-loop tests for validation of control algorithms.

Table of Contents:
Part I: Distributed Energy Resources and Microgrids: Preliminaries Chapter 1: Distributed energy resources: introduction and classification Chapter 2: Microgrids: introduction and research problem descriptions Part II: Coordinated Planning of DERs in Microgrids: Optimal Sizing and Siting Chapter 3: Composite sensitivity factor-based method for DG planning Chapter 4: Probability-weighted robust optimisation method for DG planning Chapter 5: Multi-stage stochastic programming method for multi-energy DG planning Chapter 6: Stochastic planning of heterogeneous energy storage (HES) in residential MEMG Part III: Coordinated Operation of DERs in Microgrids: Energy Management and Voltage Regulation Chapter 7: Hourly coordination of energy storage and direct load control Chapter 8: Daily coordination of microturbines and demand response Chapter 9: Optimal dispatch of MEMGs Chapter 10: Temporally coordinated dispatch of MEMGs under diverse uncertainties Chapter 11: Robustly optimal dispatch of MEMGs with flexible loads Chapter 12: Multi-timescale coordinated voltage/var control optimisation Chapter 13: Three-stage robust inverter-based voltage/var control optimisation Part IV: Coordinated real-time control of DERs: distributed controller design and hardware-in-the-loop tests Chapter 14: Power system frequency control by aggregated energy storage systems Chapter 15: Power system frequency support by grid-interactive smart buildings Chapter 16: Decentralised-distributed hybrid voltage control by inverter-based DERs Chapter 17: Two-level distributed voltage/var control by aggregated PV inverters Chapter 18: Event-triggered control of DERs and controller hardware-in-the-loop validation Chapter 19: Three-level coordinated voltage control of DERs and power hardware-in-the-loop validation


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Product Details
  • ISBN-13: 9781839532689
  • Publisher: Institution of Engineering and Technology
  • Publisher Imprint: Institution of Engineering and Technology
  • Height: 234 mm
  • Sub Title: Optimisation, control, and hardware-in-the-loop validation
  • ISBN-10: 1839532688
  • Publisher Date: 07 Feb 2022
  • Binding: Hardback
  • Language: English
  • Width: 156 mm


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