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Risk modeling, analysis and control of multi-energy systems
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
正題名/作者:
Risk modeling, analysis and control of multi-energy systems/ by Yonghua Song ... [et al.].
其他作者:
Song, Yonghua.
出版者:
Singapore :Springer Nature Singapore : : 2023.,
面頁冊數:
xiv, 254 p. :ill. (chiefly color), digital ; : 24 cm.;
Contained By:
Springer Nature eBook
標題:
Security Science and Technology. -
電子資源:
https://doi.org/10.1007/978-981-99-1090-8
ISBN:
9789819910908
Risk modeling, analysis and control of multi-energy systems
Risk modeling, analysis and control of multi-energy systems
[electronic resource] /by Yonghua Song ... [et al.]. - Singapore :Springer Nature Singapore :2023. - xiv, 254 p. :ill. (chiefly color), digital ;24 cm.
Multi-energy systems and risk issues -- A Framework for Risk Modeling of Integrated Electricity and Gas Systems Utilizing Universal Generating Function Techniques -- Short-Term Risk Evaluation of Integrated Electricity and Gas Systems Considering Dynamics of Gas Flow -- Risk Evaluation of Integrated Electricity and Gas Systems Considering Cascading Effects -- Definitions and Risk Modelling of Two-Interdependent-Performance Multi-State System and its Application for CHP units -- Operational Risk Assessment of Integrated Electricity and Heating Systems with CHP units -- Operational Risk of Multi-Energy Customers Considering Service-Based Self-Scheduling -- Multi-phase Risk Modelling and Evaluation of Multi-energy Systems under Windstorms -- Long-term Reserve Expansion of Integrated Electricity and Gas Systems for Risk Mitigation -- Operational Risk Assessment of Integrated Electricity and Heating Systems with CHP units.
This book focuses on the risk modeling, analysis and control of multi-energy systems considering cross-sectorial failure propagation. Both models and methods have been addressed with engineering practice. This is accomplished by doing a thorough investigation into the modeling of system physics and reliabilities in both long- and short-term phases. Different models and methods to evaluate the risk of multi-energy systems considering various disturbances, e.g., component failures, load uncertainties and extreme weather, are studied in detail. Furthermore, several risk control strategies for multi-energy systems, such as long-term capacity planning and integrated demand response, are analyzed in this book, which is especially suited for readers interested in system risk management. The book can benefit researchers, engineers, and graduate students in the fields of electrical and electronic engineering, energy engineering, complex network and control engineering, etc.
ISBN: 9789819910908
Standard No.: 10.1007/978-981-99-1090-8doiSubjects--Topical Terms:
783419
Security Science and Technology.
LC Class. No.: TK1005
Dewey Class. No.: 621.31
Risk modeling, analysis and control of multi-energy systems
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Multi-energy systems and risk issues -- A Framework for Risk Modeling of Integrated Electricity and Gas Systems Utilizing Universal Generating Function Techniques -- Short-Term Risk Evaluation of Integrated Electricity and Gas Systems Considering Dynamics of Gas Flow -- Risk Evaluation of Integrated Electricity and Gas Systems Considering Cascading Effects -- Definitions and Risk Modelling of Two-Interdependent-Performance Multi-State System and its Application for CHP units -- Operational Risk Assessment of Integrated Electricity and Heating Systems with CHP units -- Operational Risk of Multi-Energy Customers Considering Service-Based Self-Scheduling -- Multi-phase Risk Modelling and Evaluation of Multi-energy Systems under Windstorms -- Long-term Reserve Expansion of Integrated Electricity and Gas Systems for Risk Mitigation -- Operational Risk Assessment of Integrated Electricity and Heating Systems with CHP units.
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This book focuses on the risk modeling, analysis and control of multi-energy systems considering cross-sectorial failure propagation. Both models and methods have been addressed with engineering practice. This is accomplished by doing a thorough investigation into the modeling of system physics and reliabilities in both long- and short-term phases. Different models and methods to evaluate the risk of multi-energy systems considering various disturbances, e.g., component failures, load uncertainties and extreme weather, are studied in detail. Furthermore, several risk control strategies for multi-energy systems, such as long-term capacity planning and integrated demand response, are analyzed in this book, which is especially suited for readers interested in system risk management. The book can benefit researchers, engineers, and graduate students in the fields of electrical and electronic engineering, energy engineering, complex network and control engineering, etc.
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