Integration of Distributed Resources in Smart Grids for Demand Response and Transactive Energy A Case Study of TCLs

Thermostatically controlled loads (TCLs) (i.e., air conditioners, water heaters, and refrigerators) represent an example of distributed resources, the ratio of which to the total power consumption in developed countries is up to 30%–40%. Providing tremendous potentials in adjustable power consumptio...

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Bibliographic Details
Main Authors: Song, Meng, Gao, Ciwei (Author)
Format: eBook
Language:English
Published: Singapore Springer Nature Singapore 2022, 2022
Edition:1st ed. 2022
Subjects:
Online Access:
Collection: Springer eBooks 2005- - Collection details see MPG.ReNa
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245 0 0 |a Integration of Distributed Resources in Smart Grids for Demand Response and Transactive Energy  |h Elektronische Ressource  |b A Case Study of TCLs  |c by Meng Song, Ciwei Gao 
250 |a 1st ed. 2022 
260 |a Singapore  |b Springer Nature Singapore  |c 2022, 2022 
300 |a XXVIII, 260 p. 142 illus., 129 illus. in color  |b online resource 
505 0 |a Chapter 1. Overview of TCLs in smart grids -- Chapter 2. Impact of Uncertain Parameters on TCL Power Capacity Calculation -- Chapter 3. Aggregated Control Models of TCLs for regulation services I -- Chapter 4. Aggregated Control Models of TCLs for regulation services II -- Chapter 5. Thermal battery modeling of TCLs and its comparisons to conventional batteries -- Chapter 6. Energy storage Models of TCLs under different control methods -- Chapter 7. Parameter identification of multi-time scale TCL aggregated models -- Chapter 8. Hierarchical scheduling of TCL flexibility for transactive energy -- Chapter 9. Multi-time scale transactive control and scheduling of TCLs for smoothing microgrid tie flow fluctuations -- Chapter 10. Robust Distribution System Load Restoration with Time-Dependent Cold Load Pickup 
653 |a Electric power distribution 
653 |a Energy Grids and Networks 
653 |a Energy policy 
653 |a Energy Policy, Economics and Management 
653 |a Energy and state 
700 1 |a Gao, Ciwei  |e [author] 
041 0 7 |a eng  |2 ISO 639-2 
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520 |a Thermostatically controlled loads (TCLs) (i.e., air conditioners, water heaters, and refrigerators) represent an example of distributed resources, the ratio of which to the total power consumption in developed countries is up to 30%–40%. Providing tremendous potentials in adjustable power consumption, TCLs have attracted major interests in DR and transactive energy opportunities. It has highlighted the advantages of TCLs in responding to uncertainties in power systems. This book provides an insight of TCLs as typical distributed resources in smart grids for demand response and transactive energy to address the imbalance between supply and demand problems in power systems. The key points on analysis of uncertainty parameters, aggregated control models, battery modelling, multi-time scale control, transactive control and robust restoration of TCLs are all included. These are the research points of smart grids and deserve much attention.  
520 |a The proliferation of renewable energy enhances the sustainability of power systems, but the inherent variability also poses great challenges to the planning and operation of large power grids. The corresponding electric power deficiencies can be compensated by fast ramping generators and energy storage devices. However, frequent ramp up/down power adjustments can increase the operation and the maintenance cost of generators. Moreover, storage devices are regarded as costly alternatives. Demand response (DR) and transactive energy can address this problem owing to its attractive and versatile capability for balancing the supply-demand, improving energy efficiency, and enhancing system resilience. Distributed resources are the typical participants of DR and transactive energy programs, which greatly contribute to keep the supply and demand in a balance.  
520 |a We believe this book will offer the related researcher a better understanding on the integration of distributed resources into smart grid for demand response and transactive energy. And it will be helpful to address the problems in practical projects