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  • © 2011

Dynamic Management of Sustainable Development

Methods for Large Technical Systems

  • Paves the way for the development of new IT systems with an original approach to the management of large technical systems sustainable development
  • Includes optimal initial state methods that consider up to 60 alternative development activities
  • Describes methods that have already been tried and tested in Europe
  • Includes supplementary material: sn.pub/extras

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Table of contents (10 chapters)

  1. Front Matter

    Pages i-xxxii
  2. Problem Statement

    • Zigurds Krishans, Anna Mutule, Yuri Merkuryev, Irina Oleinikova
    Pages 1-10
  3. Mathematical Basics of LTS Sustainable Development Dynamic Management

    • Zigurds Krishans, Anna Mutule, Yuri Merkuryev, Irina Oleinikova
    Pages 11-24
  4. Modeling LTS and their D-Process

    • Zigurds Krishans, Anna Mutule, Yuri Merkuryev, Irina Oleinikova
    Pages 25-34
  5. LTS D-Process Dynamic Optimization on all D-States

    • Zigurds Krishans, Anna Mutule, Yuri Merkuryev, Irina Oleinikova
    Pages 35-44
  6. Optimal Initial States Method

    • Zigurds Krishans, Anna Mutule, Yuri Merkuryev, Irina Oleinikova
    Pages 45-56
  7. Optimal Initial States Searching Methods

    • Zigurds Krishans, Anna Mutule, Yuri Merkuryev, Irina Oleinikova
    Pages 57-79
  8. LTS Sustainable Development Management Approximate Methods

    • Zigurds Krishans, Anna Mutule, Yuri Merkuryev, Irina Oleinikova
    Pages 81-96
  9. Information Technology for Sustainable Development of Electric Power Systems

    • Zigurds Krishans, Anna Mutule, Yuri Merkuryev, Irina Oleinikova
    Pages 97-113
  10. The Database

    • Zigurds Krishans, Anna Mutule, Yuri Merkuryev, Irina Oleinikova
    Pages 115-129
  11. Software System for Sustainable Development Management

    • Zigurds Krishans, Anna Mutule, Yuri Merkuryev, Irina Oleinikova
    Pages 131-157
  12. Back Matter

    Pages 159-163

About this book

Dynamic management of systems development is a precondition for the realization of sustainable system development. This approach allows for the usage of systems theory methods that take into consideration the interaction of decisions made over time and space. A characteristic feature of this kind of method is that the process of sophisticated object development over time is examined for optimal decision selection. This requires the application of modelling methods that represent properties of the developing objects, high speed calculation methods for the estimation of technical and economic characteristics, as well as effective optimization methods. Dynamic Management of Sustainable Development presents a concise summary of the authors’ research in the area of dynamic methods analysis of technical systems development. Along with systematic illustration of mathematical methods, considerable attention is drawn to practical realization and applications. Dynamic Management of Sustainable Development will be helpful for scientists involved in the mathematical modelling of large technical systems development and for engineers working in the area of large technical systems planning.

Authors and Affiliations

  • , Laboratory of Power Systems Mathematical, Institute of Physical Energetics, Riga, Latvia

    Zigurds Krishans, Anna Mutule, Irina Oleinikova

  • Department of Modelling and Simulation, Riga Technical University, Riga, Latvia

    Yuri Merkuryev

About the authors

Zigurds Krishans (Dr.habil.sc.ing.) is Full Professor and Leading Researcher of the Institute of Physical Energetics, and Head of the Laboratory of Power Systems Mathematical Modelling. He is also Vice-President of the Baltic Association of Electric Power System Researchers, Chairman of the Inspection Committee of National Organization of Automatic Control of Latvia (LANO), and a member of the Scientific Council of the Institute of Physical Energetics. He is an editorial board member of the Latvian Journal of Physics and Technical Sciences and the International Journal of Russian Academy of Sciences “Economy of Ural Region”. Anna Mutule (Dr.sc.ing.) is Leading Researcher of the Institute of Physical Energetics, Laboratory of Power Systems Mathematical Modelling, and Associate Professor at Riga Technical University. She is a member of the Baltic Association of Electric Power System Researchers and of the Board of Latvian Electrical Power Society (LEEA), as well as an Expert of the Latvian Council of Science. Yuri Merkuryev (Dr.habil.sc.ing.) is Full Professor of the Institute of Information Technology of Riga Technical University and Head of the Department of Modelling and Simulation. He is President of the Latvian Simulation Society, Director of Latvian Centre of the McLeod Institute of Simulation Science, a board member of the Federation of European Simulation Societies, EUROSIM, Chartered IT Professional Fellow of British Computer Society and a senior member of the Society for Modeling and Simulation International (SCS). He is also Associate Editor of Simulation: Transactions of The Society for Modeling and Simulation International and an editorial board member of the International Journal of SIMULATION & Process Modelling. Irina Oleinikova (Dr.sc.ing.) is Leading Researcher of the Institute of Physical Energetics, Laboratory of Power Systems Mathematical Modelling and Associate Professor of Riga Technical University. She is also a member of the Baltic Association of Electric Power System Researchers, Expert of the Latvian Council of Science and a board member of the Latvian Electrical Power Society (LEEA).

Bibliographic Information

Buy it now

Buying options

eBook USD 84.99
Price excludes VAT (USA)
  • Available as EPUB and PDF
  • Read on any device
  • Instant download
  • Own it forever
Softcover Book USD 109.99
Price excludes VAT (USA)
  • Compact, lightweight edition
  • Dispatched in 3 to 5 business days
  • Free shipping worldwide - see info
Hardcover Book USD 109.99
Price excludes VAT (USA)
  • Durable hardcover edition
  • Dispatched in 3 to 5 business days
  • Free shipping worldwide - see info

Tax calculation will be finalised at checkout

Other ways to access