Power System Restoration: Methodologies And Implementation Strategies (a Selected Reprint Volume)
暫譯: 電力系統恢復:方法論與實施策略(精選重印卷)

Adibi

  • 出版商: Wiley
  • 出版日期: 2000-06-22
  • 售價: $8,720
  • 貴賓價: 9.5$8,284
  • 語言: 英文
  • 頁數: 690
  • 裝訂: Hardcover
  • ISBN: 0780353978
  • ISBN-13: 9780780353978
  • 海外代購書籍(需單獨結帳)

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Electrical Engineering/Power Power System Restoration Methodologies & Implementation Strategies At a time when bulk power systems operate close to their design limits, the restructuring of the electric power industry has created vulnerability to potential blackouts. Prompt and effective power system restoration is essential for the minimization of downtime and costs to the utility and its customers, which mount rapidly after a system blackout. Power System Restoration meets the complex restoration challenges that arise by the dynamic capabilities of new technology in areas such as large-scale system analysis, communication and control, data management, artificial intelligence, and allied disciplines. It provides an up-to-date description of the restoration methodologies and implementation strategies practiced internationally. The book opens with a general overview of the restoration process and then covers:

  • Techniques used in restoration planning and training
  • Knowledge-based systems as operational aids in restoration
  • Issues associated with hydro and thermal power plants
  • High and extra-high voltage transmission systems
  • Restoration of distribution systems

Power System Restoration is essential reading for all power system planners and operating engineers in the power industry. It is also a valuable reference for researchers, practicing power engineers, and engineering students.

Table of Contents:

Preface.

RESTORATION OVERVIEW.

Power System Restoration—A Task Force Report (M. Adibi, et al.).

Power System Restoration—The Second Task Force Report (M. Adibi, et al.).

Analytical Tools for Power System Restoration—Conceptual Design (F. Wu, et al.).

System Operations Challenges (E. Nielson, et al.).

Power System Restoration Issues (M. Adibi, et al.).

Special Considerations in Power System Restoration (M. Adibi, et al.).

New Approaches in Power System Restoration (M. Adibi, et al.).

A Hierarchical Interactive Approach to Electric Power System Restoration (R. Nadira, et al.).

Special Consideration in Power System Restoration—The Second Working Group Report (M. Adibi, et al.).

Steam Plant Startup and Control in System Restoration (F. de Mello, et al.).

An AGC Implementation for System Islanding and Restoration Conditions (H. Ross, et al.).

Analytical Tool Requirements for Power System Restoration (M. Adibi, et al.).

A Framework for Power System Restoration Following a Major Power Failure (J. Ancona).

RESTORATION TECHNIQUES.

Cold Load Pickup (J. McDonald, et al.).

Physically Based Modeling of Cold Load Pickup (S. Ihara, et al.).

Blackstart Utilization of Remote Combustion Turbines, Analytical Analysis, and Field Test (R. Shultz, et al.).

Overvoltage Control During Restoration (M. Adibi, et al.).

Reactive Capability Limitation of Synchronous Machines (M. Adibi, et al.).

An Approach to Standing Phase Angle Reduction (S. Wunderlich, et al.).

Nuclear Plant Requirements During Power System Restoration (M. Adibi, et al.).

Protective System Issues During Restoration (M. Adibi, et al.).

Remote Cranking of Stream Electric Stations (M. Adibi, et al.).

Optimizing Generator Reactive Power Resources (M. Adibi, et al.).

Asymmetry Issues in Power System Restoration (M. Adibi, et al.).

Frequency Response of Prime Movers During Restoration (M. Adibi, et al.).

Energizing High and Extra-High Voltage Lines During Restoration (M. Adibi, et al.).

RESTORATION PLANNING.

System Restoration Plan Development for a Metropolitan Electric System (R. Kafka, et al.).

Role of Interactive and Control Computers in the Development of a System Restoration Plan (R. Kafka, et al.).

System Restoration—Deploying the Plan (W. Johnson).

Power System Restoration Planning (M. Adibi, et al.).

A Systematic Method for Power System Restoration Planning (J. Huang, et al.).

From Generic Restoration Actions to Specific Restoration Strategies (L. Fink, et al.).

Estimating Restoration Duration (M. Adibi, et al.).

RESTORATION TRAINING.

Development of a Large-Scale Dispatcher Training Simulator and Training Results (I. Susmago, et al.).

Dispatcher Training Simulators—Lessons Learned (J. Bucciero, et al.).

The Uses of an Operator Training Simulator for System Restoration (R. Chu, et al.).

An Advanced Transportable Operator Training Simulator (J. Waight, et al.).

Restoration Simulator Prepares Operators for Major Blackouts (R. Chu, et al.).

Bulk Power System Restoration Training Techniques (M. Cooper, et al.).

Experiences Using the Dispatcher Training Simulator as a Training Tool (G. Miller, et al.).

Verification of an Advanced Power System Restoration Support System Using an Operator Training Simulator (T. Kobayashi, et al.).

Evaluating a Restoration Tool Using Consolidated Edison's Training Simulator (M. Rafian, et al.).

System Restoration Guidelines: How to Set-up, Conduct, and Evaluate a Drill (J. Willson).

Power System Restoration Training Questionnaire Results (J. Willson).

SPECIFIC SYSTEM RESTORATION.

Low Voltage Bulk Power System Restoration Simulation (E. Simburger, et al.).

Summary of System Restoration Plan for the Pacific Northwest Power System (P. Arnold).

Field Experiences in Reenergization of Electrical Networks from Thermal and Hydro Units (E. Mariani, et al.).

System Restoration at Philadelphia Electric Company (D. Scheurer).

Service Restoration Following a Major Failure on the Hydro-Quebec Power System (G. Morin).

Policies for Restoration of a Power System (J. Gutiérrez, et al.).

Restoration in Sweden and Experience Gained from the Blackout of 1983 (R. Kearsley).

Simulation and Field Tests of the Start of a Large Coal-Fired Generating Station Utilizing Small Remote Hydro Generation (R. Lindstrom).

Power System Restoration Incorporating Interactive Graphics and Optimization (J. Huang, et al.).

Simulations and Field Tests of a Reactor Coolant Pump Emergency Start-up by Means of Remote Gas Units (P. Omahen, et al.).

Major Incidents on the French Electric System: Potentially and Curative Measures Studies (C. Counan, et al.).

Black-start and Restoration of a Part of the Italian HV Network: Modeling and Simulation of a Field Test (B. Delfino, et al.).

Interactive Long-Term Simulation for Power System Restoration Planning (N. Fountas, et al.).

Analysis of the Power Blackout of June 8, 1995 in the Israel Electric Corporation (Y. Hain, et al.).

KNOWLEDGE-BASED SYSTEMS.

Development of a Knowledge-Based System for Power System Restoration (T. Sakaguchi, et al.).

Development of a Guidance Method for Power System Restoration (Y. Kojima, et al.).

The Development of Power System Restoration Methods for a Bulk Power System by Applying Knowledge Engineering Techniques (Y. Kojima, et al.).

Implementation of a Real-Time Expert System for a Restoration Guide in a Dispatching Center (K. Hotta, et al.).

Guiding a Power System Restoration with an Expert System (D. Kirschen, et al.).

Knowledge-Based Systems as Operational Aids in Power System Restoration (K. Matsumoto, et al.).

Operational Experience and Maintenance of a On-Line Expert System for Customer Restoration and Fault Testing (T.-K. Ma, et al.).

A Knowledge-Based Method for Making Restoration Plan of Bulk Power System (K. Shimakura, et al.).

Generation Capability Dispatch for Bulk Power System Restoration: A Knowledge-Based Approach (C.-C. Liu, et al.).

Expert System Requirements for Power System Restoration (M. Adibi, et al.).

Tie Line Utilization During Power System Restoration (K.-L. Liou, et al.).

Power System Restoration by Joint Usage of Expert System and Mathematical Programming Approach (T. Nagata, et al.).

A Petri Net Algorithm for Scheduling of Generic Restoration Actions (J.-S. Wu, et al.).

Hierarchical Time-Extended Petri Nets as Generic Tool for Power System Restoration (N. Fountas, et al.).

Decision Aid Function for Restoration of Transmission Power Systems: Conceptual Design and Real Time Considerations (T. Kostić, et al.).

DISTRIBUTION SYSTEM RESTORATION.

Adaptation of the Simplex Algorithm to Modeling of Cold Load Pickup of a Large Secondary Network Distribution System (M. Yolcu, et al.).

Statistical Synthesis of Physically Based Load Models with Applications to Cold Load Pickup (C.-Y. Chong, et al.).

Effects of Cold Load Pickup at the Distribution Substation Transformer (R. Wilde).

An Expert System Operational Aid for Restoration and Loss Reduction of Distribution Systems (C.-C. Liu, et al.).

A New Algorithm for Service Restoration in Distribution Systems (K. Aoki, et al.).

Heuristic Search Approach to Distribution System Restoration (A. Morelato, et al.).

Distribution Transformer Overloading Capability under Cold-Load Pickup Conditions (J. Aubin, et al.).

MARS: An Aid for Network Restoration After a Local Disturbance (E. Mondon, et al.).

An Analytical Approach for Step-by-Step Restoration of Distribution Systems Following Extended Outages (C. Uçak, et al.).

Knowledge-Based Behavior Interface: Its Application to Power Restoration Support System (J. Shinohara, et al.).

An Object-Oriented Approach for Implementing Power System Restoration Package (Z. Gaing, et al.).

Distribution System Design Optimization for Cold Load Pickup (J. Wakileh, et al.).

Distribution Feeder Reconfiguration for Service Restoration and Load Balancing (Q. Zhou, et al.).

Application of Expert System to Power System Restoration in Sub-control Center (Y.-M. Park, et al.).

Author Index.

Subject Index.

About the Editor.

About the Authors.

商品描述(中文翻譯)

描述:
電機工程/電力系統恢復方法與實施策略
在大規模電力系統運行接近其設計極限的時期,電力行業的重組使得潛在的停電風險增加。迅速且有效的電力系統恢復對於減少停機時間和公用事業及其客戶的成本至關重要,這些成本在系統停電後迅速上升。電力系統恢復應對由新技術在大規模系統分析、通信與控制、數據管理、人工智慧及相關學科等領域所帶來的複雜恢復挑戰。該書提供了國際上實踐的恢復方法與實施策略的最新描述。書中首先概述了恢復過程,然後涵蓋以下內容:
- 恢復規劃與訓練中使用的技術
- 知識型系統作為恢復的操作輔助工具
- 與水力和熱力發電廠相關的問題
- 高壓和超高壓傳輸系統
- 配電系統的恢復

《電力系統恢復》是所有電力行業的電力系統規劃者和操作工程師必讀的書籍。它也是研究人員、實踐中的電力工程師和工程學生的寶貴參考資料。

目錄:
前言。
恢復概述。
電力系統恢復—工作小組報告(M. Adibi 等)。
電力系統恢復—第二次工作小組報告(M. Adibi 等)。
電力系統恢復的分析工具—概念設計(F. Wu 等)。
系統操作挑戰(E. Nielson 等)。
電力系統恢復問題(M. Adibi 等)。
電力系統恢復中的特殊考量(M. Adibi 等)。
電力系統恢復的新方法(M. Adibi 等)。
電力系統恢復的分層互動方法(R. Nadira 等)。
電力系統恢復中的特殊考量—第二次工作小組報告(M. Adibi 等)。
系統恢復中的蒸汽廠啟動與控制(F. de Mello 等)。
系統孤島與恢復條件的AGC實施(H. Ross 等)。
電力系統恢復的分析工具需求(M. Adibi 等)。
重大電力故障後的電力系統恢復框架(J. Ancona)。
恢復技術。
冷負載啟動(J. McDonald 等)。
冷負載啟動的物理建模(S. Ihara 等)。
黑啟用遠程燃氣渦輪的利用、分析分析與現場測試(R. Shultz 等)。
恢復過程中的過電壓控制(M. Adibi 等)。
同步機的無功能力限制(M. Adibi 等)。
降低穩定相位角的方法(S. Wunderlich 等)。
核電廠在電力系統恢復期間的要求(M. Adibi 等)。
恢復過程中的保護系統問題(M. Adibi 等)。
遠程啟動蒸汽電站(M. Adibi 等)。
優化發電機無功功率資源(M. Adibi 等)。
電力系統恢復中的不對稱問題(M. Adibi 等)。
恢復過程中主要動力的頻率響應(M. Adibi 等)。
恢復過程中高壓和超高壓線路的通電(M. Adibi 等)。
恢復規劃。
都市電力系統的系統恢復計劃開發(R. Kafka 等)。
互動與控制計算機在系統恢復計劃開發中的角色(R. Kafka 等)。
系統恢復—計劃的部署(W. Johnson)。
電力系統恢復規劃(M. Adibi 等)。
電力系統恢復規劃的系統方法(J. Huang 等)。
從通用恢復行動到具體恢復策略(L. Fink 等)。
估算恢復持續時間(M. Adibi 等)。
恢復訓練。
大型調度員訓練模擬器的開發與訓練結果(I. Susmago 等)。
調度員訓練模擬器—經驗教訓(J. Bucciero 等)。
操作員訓練模擬器在系統恢復中的應用(R. Chu 等)。
一種先進的可攜式操作員訓練模擬器(J. Waight 等)。
恢復模擬器為操作員準備重大停電(R. Chu 等)。
大規模電力系統恢復訓練技術(M. Cooper 等)。
使用調度員訓練模擬器作為訓練工具的經驗(G. Miller 等)。
使用操作員訓練模擬器驗證先進的電力系統恢復支持系統(T. Kobayashi 等)。
使用Consolidated Edison的訓練模擬器評估恢復工具(M. Rafian 等)。
系統恢復指導方針:如何設置、進行和評估演練(J. Willson)。
電力系統恢復訓練問卷結果(J. Willson)。
特定系統恢復。
低壓大規模電力系統恢復模擬(E. Simburger 等)。
太平洋西北電力系統的系統恢復計劃摘要(P. Arnold)。
從熱力和水力單元重新通電的現場經驗(E. Mariani 等)。
費城電力公司的系統恢復(D. Scheurer)。
在Hydro-Quebec電力系統上重大故障後的服務恢復(G. Morin)。
電力系統恢復的政策(J. Gutiérrez 等)。
瑞典的恢復及1983年停電的經驗(R. Kearsley)。
利用小型遠程水力發電的煤電站啟動的模擬與現場測試(R. Lindstrom)。
結合互動圖形與優化的電力系統恢復(J. Huang 等)。
通過遠程氣體單元的反應堆冷卻泵緊急啟動的模擬與現場測試(P. Omahen 等)。
法國電力系統的重大事件:潛在與治療措施研究(C. Counan 等)。
意大利高壓網絡部分的黑啟用與恢復:現場測試的建模與模擬(B. Delfino 等)。
電力系統恢復規劃的互動長期模擬(N. Fountas 等)。
1995年6月8日以色列電力公司停電的分析(Y. Hain 等)。
基於知識的系統。
電力系統恢復的知識型系統開發(T. Sakaguchi 等)。
電力系統恢復的指導方法開發(Y. Kojima 等)。
應用知識工程技術為大規模電力系統開發的電力系統恢復方法(Y. Kojima 等)。
在調度中心實施實時專家系統以作為恢復指導(K. Hotta 等)。
使用專家系統指導電力系統恢復(D. Kirschen 等)。
作為電力系統恢復操作輔助工具的知識型系統(K. Matsumoto 等)。
在線專家系統在客戶恢復和故障測試中的操作經驗與維護(T.-K. Ma 等)。
為大規模電力系統制定恢復計劃的知識型方法(K. Shimakura 等)。
大規模電力系統恢復的發電能力調度:基於知識的方法(C.-C. Liu 等)。
電力系統恢復的專家系統需求(M. Adibi 等)。