電力系統靈活性-建模,優化與機制設計 (英文版) 9787030754493 周明 武昭原 李庚銀

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書名:電力系統靈活性-建模,優化與機制設計 (英文版)
ISBN:9787030754493
出版社:科學
著編譯者:周明 武昭原 李庚銀
頁數:271
所在地:中國大陸 *此為代購商品
書號:1556726
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內容簡介

高比例新能源接入的未來電力系統中,風電和太陽能將成為電力供應的重要支柱,其風、光資源的隨機性和波動性,導致電力系統本徵特性改變,對電力系統靈活性提出了更高的要素。高比例新能源電力系統中,波動電源和負荷不確定性雙重疊加,採用增加備用應對不確定性的模式在技術和經濟上均難以為繼,需要針對電力系統靈活性探索新的解決方式。為此,本書首次全面探索電力系統靈活性的建模方法、優化運行理論和相應的市場機制設計,旨在為構建含高比例新能源的未來靈活電力系統提供技術解決方案和理論支揮,期待本書能夠為電氣工程領域的讀者帶來有益的啟發。

目錄

1 Introduction
1 1 Why Is Flexibility Necessary for the Power System
1 2 Overview of Power System Flexibility
1 2 1 History and Development
1 2 2 Taxonomy-Power System Flexibility Sources
1 2 3 Power System Flexibility Analysis
1 3 Market Solutions
1 4 Summary
References
2 Power System Flexibility Modelling
2 1 Introduction
2 2 Power System Flexibility Resource Classification
2 2 1 Demand Side Flexibility Resources
2 2 2 Power Supply Side Flexibility Resources
2 2 3 Grid Side Flexibility Resources
2 3 Flexible Power Supply Resources: Analysis and Modelling
2 3 1 Technical Characteristics of Flexible Power Supply Resources
2 3 2 Economic Characteristics of Power Supply Resources Flexibility
2 4 Demand Side Flexibility Model
2 4 1 Interruptible Load
2 4 2 Adjustable Load
2 4 3 Shiftable Load
2 5 Power Grid Flexible Regulation Technologies
2 5 1 Voltage Source Converter (VSC) Based Multiple-Terminal DC Transmission
2 5 2 AC Grid Flexible Topology Control
2 6 Conclusions
References
3 Flexibility-Based Economic Dispatch
3 1 Introduction
3 2 Quantifying Accommodated Domain of Wind Power for Flexible Look-Ahead Unit Commitment
3 2 1 Formulation of ADWP
3 2 2 Flexible Look-Ahead Unit Commitment Models
3 3 Flexibility Based Day-Ahead Generation-Reserve Bilevel Decision Model
3 3 1 Day-Ahead Unit Commitment Model Considering Flexibility Constraint
3 3 2 Flexibility Based Reserve Decision Method
3 4 An Endogenous Approach to Quantifying the Wind Power Reserve
3 4 1 Dynamic S&NCED Model with AARO
3 4 2 Two-Stage Solution Method Based on the Benders Decomposition
3 5 Case Studies
3 5 1 Case Studies of the Flexible Look-Ahead Unit Commitment
3 5 2 Case Studies of the Day-Ahead Generation-Reserve Bilevel Decision Model
3 5 3 Case Studies of the Endogenous Approach to Quantifying the Wind Power Reserve
3 6 Conclusion
References
4 Distributed Dispatch Approach in AC/DC Hybrid Systems
4 1 Introduction
4 2 Distributed Dispatch Approach in Bulk AC/DC Hybrid Systems
4 2 1 Distributed Scheduling Framework for Bulk AC/DC Hybrid Transmission Systems
4 2 2 Improved ATC-Based Distributed SCUC for a Bulk AC/DC Hybrid System
4 2 3 Solution Procedure
4 3 Distributed Dispatch Approach in the VSC-MTDC Meshed AC/DC Hybrid Systems
4 3 1 Hierarchy of VSC-MTDC Meshed AC/DC Grid
4 3 2 Hierarchical and Robust Scheduling Formulation
4 3 3 Solution Methodology
4 4 Case Studies
4 4 1 Distributed Dispatch Approach in Bulk AC/DC Hybrid Systems
4 4 2 Distributed Dispatch Approach in VSC-MTDC Meshed AC/DC Hybrid Systems
4 5 Conclusion
References
5 Exploring Operational Flexibility of AC/DC Power Grids
5 1 Introduction
5 2 Improving Flexible Operation of MTDC Hybrid Networks by VSC Power Regulation
5 2 1 Problem Description
5 2 2 Flexible Operation Mechanism and Model
5 2 3 Flexible Operation Improvement Mode for VSC Station
5 3 Exploiting the Operational Flexibility of Wind Integrated Hybrid AC/DC Power Systems
5 3 1 SCED Model with TS for Hybrid AC/DC Grid
5 3 2 Two-Stage RO Based on C&CG
5 4 Case Studies
5 4 1 Verify of Power Margin Tracking Droop Regulation (PMT) Mode
5 4 2 Exploring Operational Flexibility of AC/DC Power Networks Using TS
5 5 Conclusion
References
6 Demand Side Flexibility
6 1 Introduction
6 2 Residential Load Demand Response Model
6 3 Price-Based Demand Response Model
6 3 1 Energy Management Model of the ITCA
6 3 2 Flexibility of ITCAs
6 3 3 ITCAs' Flexibility Under TOU Power Price
6 3 4 Unit Scheduling Model Considering the Flexibility of ITCAs
6 4 Integrated Energy System Demand Response Model
6 4 1 Typical Topology
6 4 2 Integrated Demand Response
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