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Reliability and Risk Evaluation of Wind Integrated Power Systems

Reliability and Risk Evaluation of Wind Integrated Power Systems
Author: Roy Billinton
Publisher: Springer Science & Business Media
Total Pages: 138
Release: 2013-03-15
Genre: Business & Economics
ISBN: 8132209877

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The world is witnessing a rapid growth in wind and other renewable based electricity generation due to environmental concerns associated with electricity generation from the conventional sources. Wind power behaves quite differently than conventional electric power generating units due to its intermittent and diffuse nature. System planners and operators face the variability and uncertainty of wind power availability, and therefore, encounter considerable challenges in making decisions to maintain the adequacy and security of wind integrated power systems. This volume intends to bring out the original research work of researchers from academia and industry in understanding, quantifying and managing the risks associated with the uncertainty in wind variability in order to plan and operate a modern power system integrated with a significant proportion of wind power generation with an acceptable level of reliability. Accurate modeling of wind power variability and proper incorporation of the models in reliability and risk evaluation is very important for the planning and operation of electric power systems, and will play a crucial role in defining the requirement of various types of resources and services, such as storage and ancillary services in power systems.


Reliability and Risk Evaluation of Wind Integrated Power Systems

Reliability and Risk Evaluation of Wind Integrated Power Systems
Author: Roy Billinton
Publisher: Springer
Total Pages: 128
Release: 2013-03-27
Genre: Business & Economics
ISBN: 9788132209881

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The world is witnessing a rapid growth in wind and other renewable based electricity generation due to environmental concerns associated with electricity generation from the conventional sources. Wind power behaves quite differently than conventional electric power generating units due to its intermittent and diffuse nature. System planners and operators face the variability and uncertainty of wind power availability, and therefore, encounter considerable challenges in making decisions to maintain the adequacy and security of wind integrated power systems. This volume intends to bring out the original research work of researchers from academia and industry in understanding, quantifying and managing the risks associated with the uncertainty in wind variability in order to plan and operate a modern power system integrated with a significant proportion of wind power generation with an acceptable level of reliability. Accurate modeling of wind power variability and proper incorporation of the models in reliability and risk evaluation is very important for the planning and operation of electric power systems, and will play a crucial role in defining the requirement of various types of resources and services, such as storage and ancillary services in power systems.


Risk Management of Non-Renewable Energy Systems

Risk Management of Non-Renewable Energy Systems
Author: Ajit Kumar Verma
Publisher: Springer
Total Pages: 436
Release: 2015-05-09
Genre: Technology & Engineering
ISBN: 3319160621

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This book describes the basic concepts of risk and reliability with detailed descriptions of the different levels of probabilistic safety assessment of nuclear power plants (both internal and external). The book also maximizes readers insights into time dependent risk analysis through several case studies, whilst risk management with respect to non renewable energy sources is also explained. With several advanced reactors utilizing the concept of passive systems, the reliability estimation of these systems are explained in detail with the book providing a reliability estimation of components through mechanistic model approach. This book is useful for advanced undergraduate and post graduate students in nuclear engineering, aerospace engineering, industrial engineering, reliability and safety engineering, systems engineering and applied probability and statistics. This book is also suitable for one-semester graduate courses on risk management of non renewable energy systems in all conventional engineering branches like civil, mechanical, chemical, electrical and electronics as well as computer science. It will also be a valuable reference for practicing engineers, managers and researchers involved in reliability and safety activities of complex engineering systems.


Reliability Assessment of Generation and Transmission Systems Integrated with Wind Farms

Reliability Assessment of Generation and Transmission Systems Integrated with Wind Farms
Author: Tengran Sun
Publisher:
Total Pages: 50
Release: 2017
Genre:
ISBN:

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The main purpose of power system reliability assessment is to quantify the reliability level of power system, then function as a guide to system planning and operation. Due to the random behavior of wind power generation and the intermittency associated with it, this type power generation is difficult to control and predict. With the increase of wind turbine capacity and wind farm scale, it is necessary to study the how the reliability will change within the generation and transmission system with largescale wind farm integration, and comprehensively evaluate the contribution of wind power. This report is going to presenting a study of the reliability of bulk power system with large scale wind farms integration by using sequential Monte-Carlo simulation. In this project, the sequential Monte-Carlo simulation method is presented to evaluate the reliability model of generation and transmission systems with wind farms, and the reliability indices of the wind power integration in power system is also calculated. MATLAB software is used in developing the required code for the project. The study is performed on IEEE-RTS79 test system along with wind farm model. Finally, by comparing the different integration schemes of wind farms, the reliability of generation and transmission systems integrated with largescale wind farms will be evaluated. The referenced papers, books and online links are the main source of data, and there are also some empirical values used in this project. Simulations and results are presented using MATLAB. The proposed calculation method uses sequential Monte-Carlo simulation to evaluate the reliability of the bulk power system with wind farm integration. Models of generation and transmission system and the wind farm along with the different connection solutions are discussed. With the available wind farm topology, this research focuses on the program in MATLAB to evaluating the system reliability and comparing with different integration solutions.


Renewable Energy Integration

Renewable Energy Integration
Author: Lawrence E. Jones
Publisher: Academic Press
Total Pages: 529
Release: 2014-06-12
Genre: Business & Economics
ISBN: 0124081223

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Renewable Energy Integration is a ground-breaking new resource - the first to offer a distilled examination of the intricacies of integrating renewables into the power grid and electricity markets. It offers informed perspectives from internationally renowned experts on the challenges to be met and solutions based on demonstrated best practices developed by operators around the world. The book's focus on practical implementation of strategies provides real-world context for theoretical underpinnings and the development of supporting policy frameworks. The book considers a myriad of wind, solar, wave and tidal integration issues, thus ensuring that grid operators with low or high penetration of renewable generation can leverage the victories achieved by their peers. Renewable Energy Integration highlights, carefully explains, and illustrates the benefits of advanced technologies and systems for coping with variability, uncertainty, and flexibility. Lays out the key issues around the integration of renewables into power grids and markets, from the intricacies of operational and planning considerations, to supporting regulatory and policy frameworks Provides global case studies that highlight the challenges of renewables integration and present field-tested solutions Illustrates enabling and disruptive technologies to support the management of variability, uncertainty and flexibility


Critical Information Infrastructures Security

Critical Information Infrastructures Security
Author: Christos G. Panayiotou
Publisher: Springer
Total Pages: 393
Release: 2016-03-24
Genre: Computers
ISBN: 3319316648

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This book constitutes revised selected papers from the 9th International Conference on Critical Information Infrastructures Security, CRITIS 2014, held in Limassol, Cyprus, in October 2014. The 20 full and 19 short papers presented in this volume were carefully reviewed and selected from 74 submissions. They are organized in topical sections named: cyber-physical systems and sensor networks; security of water systems; power and energy system security; security and recovery policies, cyber security; and security tools and protocols.


Soft Computing: Theories and Applications

Soft Computing: Theories and Applications
Author: Rajesh Kumar
Publisher: Springer Nature
Total Pages: 929
Release: 2023-04-24
Genre: Technology & Engineering
ISBN: 9811998582

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This book focuses on soft computing and how it can be applied to solve real-world problems arising in various domains, ranging from medicine and health care, to supply chain management, image processing and cryptanalysis. It gathers high-quality papers presented at the International Conference on Soft Computing: Theories and Applications (SoCTA 2022), held at University Institute of Technology, Himachal Pradesh University Shimla, Himachal Pradesh, India. The book offers valuable insights into soft computing for teachers and researchers alike; the book inspires further research in this dynamic field.


A Risk Analysis and Reliability Forecasting Method for Wind Energy Systems

A Risk Analysis and Reliability Forecasting Method for Wind Energy Systems
Author: Nikhil Chaudhry
Publisher:
Total Pages: 164
Release: 2011
Genre:
ISBN:

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ABSTRACT: Two of the most significant challenges facing the world in the 21st century are improving energy security and mitigating the effects of climate change. To counter these challenges, renewable energy sources, such as wind, are considered a possible solution and have gained importance worldwide. With many jurisdictions setting high wind-energy targets for the coming decades, risks have grown as the demand for new wind turbines has outstripped the growth of its suppliers. Integrating significant amounts of wind-electricity into existing networks raises reliability concerns due to variable nature of wind. A method for estimating the reliability of wind-energy systems is presented which is a combination of a forecasting method (probabilistic approach) and RL (Resistance-Load) technique (risk-based approach), demonstrated through a case study, and verified using real-time wind farm data.


Risk Modeling, Analysis and Control of Multi-energy Systems

Risk Modeling, Analysis and Control of Multi-energy Systems
Author: Yonghua Song
Publisher: Springer Nature
Total Pages: 262
Release: 2023-06-08
Genre: Technology & Engineering
ISBN: 9819910900

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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.