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Risk-Based Planning and Operation Strategy Towards Short Circuit Resilient Power Systems

Description:

This book focuses on the comprehensive prevention and control methods for short-circuit faults in power systems. Based on the quantification method of power system short-circuit fault risk considering extreme meteorological disasters, this book carries out theoretical research on optimal control of power system short-circuit faults at the planning and operation levels. The establishment of a comprehensive index system for short-circuit safety level of large power grids from several sides and the realization of a panoramic display of consequences of short-circuit faults in power grids are one of the features of this book, which are especially suitable for readers interested in learning about short-circuit fault solutions in power systems. This book can benefit researchers, engineers, and graduate students in the fields of electrical engineering, power electronics, and energy engineering.


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From the Back Cover

This book focuses on the comprehensive prevention and control methods for short-circuit faults in power systems. Based on the quantification method of power system short-circuit fault risk considering extreme meteorological disasters, this book carries out theoretical research on optimal control of power system short-circuit faults at the planning and operation levels. The establishment of a comprehensive index system for short-circuit safety level of large power grids from several sides and the realization of a panoramic display of consequences of short-circuit faults in power grids are one of the features of this book, which are especially suitable for readers interested in learning about short-circuit fault solutions in power systems. This book can benefit researchers, engineers, and graduate students in the fields of electrical engineering, power electronics, and energy engineering.

About the Author

Chengjin Ye received the B.S. (2010) and Ph. D (2015) degrees from the Zhejiang University, China both in electrical engineering. He served as a distribution system engineer for the Economics Institute of State Grid Zhejiang Electric Power Co., Ltd. from 2015 to 2017. He was a postdoc researcher in Zhejiang University from 2017 to 2019. From 2020, he serves as a Tenure-Track Professor with the College of Electrical Engineering, Zhejiang University, Hangzhou, China. His research areas include power system planning and operation; Grid resilience enhancement and integration of demand resources into power system operation.

Chao Guo received the B.S. (2017) and PH. D (2022) degrees in electrical engineering from Shandong University, Jinan, China, and Zhejiang University, Hangzhou, China. From 2022, he serves as a Research Professor with the School of Information and Electrical Engineering, Zhejiang University City College, Hangzhou, China. Hisresearch interests include reliability analysis, short-circuit current limitation, and the power market.


Yi Ding (M’10) received B.S. (2002) and PH. D (2007) degrees in electrical engineering from Shanghai Jiaotong University, Shanghai, China, and Nanyang Technological University, Singapore, respectively. He is a Professor with the College of Electrical Engineering, Zhejiang University, Hangzhou, China. His current research interests include power systems reliability analysis incorporating renewable energy resources, smart grid performance analysis, and engineering systems reliability modeling and optimization.

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Risk-Based Planning and Operation Strategy Towards Short Circuit Resilient Power Systems

Product ID: U9811997241
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AED76649

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Risk-Based Planning and Operation Strategy Towards Short Circuit Resilient Power Systems

Product ID: U9811997241
Condition: New
Risk-Based Planning and Operation Strategy Towards Short Circuit Resilient Power Systems-0
Type: Hardcover

AED76649

Price includes VAT & Import Duties
Availability: In Stock

Quantity:

|

Order today to get by 7-14 business days

This item qualifies for free delivery

Returns & Warranty policies

Imported From: United States

At BOLO, we work hard to ensure the products you receive are new, genuine, and sourced from reputable suppliers.

BOLO is not an authorized or official retailer for most brands, nor are we affiliated with manufacturers unless specifically stated on a product page. Instead, we source verified sellers, authorized distributors or directly from the manufacturer.

Each product undergoes thorough inspection and verification at our consolidation and fulfilment centers to ensure it meets our strict authenticity and quality standards before being shipped and delivered to you.

If you ever have concerns regarding the authenticity of a product purchased from us, please contact Bolo Support. We will review your inquiry promptly and, if necessary, provide documentation verifying authenticity or offer a suitable resolution.

Your trust is our top priority, and we are committed to maintaining transparency and integrity in every transaction.

All product information, images, descriptions, and reviews originate from the manufacturer or from trusted sellers overseas. BOLO is not affiliated with, endorsed by, or an authorized retailer for most brands listed on our website unless stated otherwise.

While we strive to display accurate information, variations in packaging, labeling, instructions, or formulation may occasionally occur due to regional differences or supplier updates. For detailed or manufacturer-specific information, please contact the brand directly or reach out to BOLO Support for assistance.

Unless otherwise stated, all prices displayed on the product page include applicable taxes and import duties.

BOLO operates in accordance with the laws and regulations of United Arab Emirates. Any items found to be restricted or prohibited for sale within the UAE will be cancelled prior to shipment. We take proactive measures to ensure that only products permitted for sale in United Arab Emirates are listed on our website.

All items are shipped by air, and any products classified as “Dangerous Goods (DG)” under IATA regulations will be removed from the order and cancelled.

All orders are processed manually, and we make every effort to process them promptly once confirmed. Products cancelled due to the above reasons will be permanently removed from listings across the website.

Description:

This book focuses on the comprehensive prevention and control methods for short-circuit faults in power systems. Based on the quantification method of power system short-circuit fault risk considering extreme meteorological disasters, this book carries out theoretical research on optimal control of power system short-circuit faults at the planning and operation levels. The establishment of a comprehensive index system for short-circuit safety level of large power grids from several sides and the realization of a panoramic display of consequences of short-circuit faults in power grids are one of the features of this book, which are especially suitable for readers interested in learning about short-circuit fault solutions in power systems. This book can benefit researchers, engineers, and graduate students in the fields of electrical engineering, power electronics, and energy engineering.


Editorial Reviews

From the Back Cover

This book focuses on the comprehensive prevention and control methods for short-circuit faults in power systems. Based on the quantification method of power system short-circuit fault risk considering extreme meteorological disasters, this book carries out theoretical research on optimal control of power system short-circuit faults at the planning and operation levels. The establishment of a comprehensive index system for short-circuit safety level of large power grids from several sides and the realization of a panoramic display of consequences of short-circuit faults in power grids are one of the features of this book, which are especially suitable for readers interested in learning about short-circuit fault solutions in power systems. This book can benefit researchers, engineers, and graduate students in the fields of electrical engineering, power electronics, and energy engineering.

About the Author

Chengjin Ye received the B.S. (2010) and Ph. D (2015) degrees from the Zhejiang University, China both in electrical engineering. He served as a distribution system engineer for the Economics Institute of State Grid Zhejiang Electric Power Co., Ltd. from 2015 to 2017. He was a postdoc researcher in Zhejiang University from 2017 to 2019. From 2020, he serves as a Tenure-Track Professor with the College of Electrical Engineering, Zhejiang University, Hangzhou, China. His research areas include power system planning and operation; Grid resilience enhancement and integration of demand resources into power system operation.

Chao Guo received the B.S. (2017) and PH. D (2022) degrees in electrical engineering from Shandong University, Jinan, China, and Zhejiang University, Hangzhou, China. From 2022, he serves as a Research Professor with the School of Information and Electrical Engineering, Zhejiang University City College, Hangzhou, China. Hisresearch interests include reliability analysis, short-circuit current limitation, and the power market.


Yi Ding (M’10) received B.S. (2002) and PH. D (2007) degrees in electrical engineering from Shanghai Jiaotong University, Shanghai, China, and Nanyang Technological University, Singapore, respectively. He is a Professor with the College of Electrical Engineering, Zhejiang University, Hangzhou, China. His current research interests include power systems reliability analysis incorporating renewable energy resources, smart grid performance analysis, and engineering systems reliability modeling and optimization.

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