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1

1948-, Bejan Adrian, Mamut Eden i NATO Advanced Study Institute on Thermodynamics and the Optimization of Complex Energy Systems (1998 : Neptun, Romania), red. Theromodynamic optimization of complex energy systems. Dordrecht: Kluwer Academic Publishers, 1999.

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2

Robert, Trappl, red. Power, autonomy, utopia: New approaches toward complex systems. New York: Plenum Press, 1986.

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Trappl, Robert. Power, Autonomy, Utopia: New Approaches Toward Complex Systems. Boston, MA: Springer US, 1986.

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The global industrial complex: Systems of domination. Lanham, Md: Lexington Books, 2011.

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Liu, Yang, i Qing-Hua Wu. Adaptive Switching Control of Large-Scale Complex Power Systems. Singapore: Springer Nature Singapore, 2023. http://dx.doi.org/10.1007/978-981-99-1039-7.

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Luca, Ferrarini, i Veber Carlo, red. Modeling, control, simulation, and diagnosis of complex industrial and energy systems. Research Triangle Park, NC: Instrumentation Systems, and Automation Society, 2009.

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7

The Nazis' march to chaos: The Hitler era through the lenses of chaos-complexity theory. Westport, CT: Praeger, 2000.

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8

Desideri, Umberto, Giampaolo Manfrida i Enrico Sciubba, red. ECOS 2012. Florence: Firenze University Press, 2012. http://dx.doi.org/10.36253/978-88-6655-322-9.

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The 8-volume set contains the Proceedings of the 25th ECOS 2012 International Conference, Perugia, Italy, June 26th to June 29th, 2012. ECOS is an acronym for Efficiency, Cost, Optimization and Simulation (of energy conversion systems and processes), summarizing the topics covered in ECOS: Thermodynamics, Heat and Mass Transfer, Exergy and Second Law Analysis, Process Integration and Heat Exchanger Networks, Fluid Dynamics and Power Plant Components, Fuel Cells, Simulation of Energy Conversion Systems, Renewable Energies, Thermo-Economic Analysis and Optimisation, Combustion, Chemical Reactors, Carbon Capture and Sequestration, Building/Urban/Complex Energy Systems, Water Desalination and Use of Water Resources, Energy Systems- Environmental and Sustainability Issues, System Operation/ Control/Diagnosis and Prognosis, Industrial Ecology.
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9

Goremykin, Sergey. Relay protection and automation of electric power systems. ru: INFRA-M Academic Publishing LLC., 2021. http://dx.doi.org/10.12737/1048841.

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The textbook describes the main issues of the theory of relay protection and automation of electric power systems. The structure and functional purpose of protection devices and automation of power transmission lines of various configurations, synchronous generators, power transformers, electric motors and individual electrical installations are considered. For each of the types of protection of the above objects, the structure, the principle of operation, the order of selection of settings are given, the advantages and disadvantages are evaluated, indicating the scope of application. The manual includes material on complete devices based on semiconductor and microprocessor element bases. The progressive use of such devices (protection of the third and fourth generations) is appropriate and effective due to their significant advantages. Meets the requirements of the federal state educational standards of higher education of the latest generation. It is intended for students in the areas of training 13.03.02 "Electric power and electrical engineering" (profile "Power supply", discipline "Relay protection and automation of electric power systems") and 35.03.06 "Agroengineering" (profile "Power supply and electrical equipment of agricultural enterprises", discipline "Relay protection of electrical equipment of agricultural objects"), as well as for graduate students and specialists engaged in the field of electrification and automation of industrial and agrotechnical objects.
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10

Presidential power and accountability: Toward a presidential accountability system. New York: Routledge, 2012.

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11

Mihaylov, Vyacheslav, Elena Sotnikova i Nina Kalpina. Eco-friendly air protection systems for motor transport facilities. ru: INFRA-M Academic Publishing LLC., 2022. http://dx.doi.org/10.12737/1093106.

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The textbook considers the issue of assessing the heat and humidity state of air in the processes of its processing in various systems, provides requirements for air protection means, taking into account their environmental friendliness, shows ways of energy saving in cooling, heating and year-round air conditioning systems, as well as when protecting the atmosphere from harmful emissions. The way of energy saving with individual thermal protection of the operator by means of local cooling during air treatment in an irrigated intensified nozzle is shown and recommendations for reducing its material consumption are developed. The method and means of reducing the toxicity of emissions of tractor internal combustion engines during its operation in rooms of limited volume by water vapor humidification of the fuel-air mixture are demonstrated. The ways of noise reduction of air protection systems are shown. Meets the requirements of the federal state educational standards of higher education of the latest generation. It is intended for students studying in the specialties "Ground transport and technical means", "Operation of transport and technological machines and complexes", "Power engineering", "Ground transport and technological complexes", "Refrigeration, cryogenic equipment and life support systems", "Technosphere safety", "Ecology and nature management".
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Bashkatov, Aleksandr, Roman Zasedatelev i Evgeniy Sumerkin. Computer programs in the electric power industry. Workshop. ru: INFRA-M Academic Publishing LLC., 2021. http://dx.doi.org/10.12737/1048798.

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The workshop consists of two chapters. The first one is basic, in the form of 10 works aimed at studying primary-level application programs. The second-extended-contains guidelines for seven works with software complexes (systems "Electric", DIALux) and a description of the application of programs for project purposes (calculation of the crossbar, sPlan, "1-2-3 Scheme", etc.). Along with the practical section, each topic includes reference and information support in the form of theoretical material. The papers contain basic information about the operations performed with mandatory references to specialized literature, including a review of standard examples and individual tasks in the applications section for monitoring the knowledge gained. Meets the requirements of the federal state educational standards of secondary vocational education of the latest generation. For students in the specialty "Power supply (by industry)" when conducting laboratory work on the academic discipline "Electrical Engineering", as well as when solving design problems, during course and diploma design, organizing practices. It can be useful not only for students of electric power specialties, but also for anyone who, by the nature of their activity, is faced with the need to perform calculations of electric networks using a computer.
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Polyakov, Anatoliy, Maksim Ivanov, Elena Ryzhkova i Ekaterina Filimonova. Electrical engineering and electronics: laboratory workshop. ru: INFRA-M Academic Publishing LLC., 2021. http://dx.doi.org/10.12737/1214583.

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The textbook presents the main theoretical provisions, evaluation tools, laboratory work and homework for the courses of the electrical cycle. It is intended for self-study of the main sections of theoretical electrical engineering. Meets the requirements of the federal state educational standards of higher education of the latest generation. For bachelors and undergraduates studying in the areas of training 15.03/04.04 "Automation of technological processes and production", 27.03/04.04 "Management in technical systems", 13.03.01 "Heat power engineering and heat engineering", 15.03.02 "Technological machines and equipment", 09.03.01 "Informatics and computer engineering", 09.03.02 "Information systems and technologies", 29.03.01 "Technology of light industry products", 29.03.02 "Technologies and design of textile products", 29.03.04 "Technology of artistic processing of materials", 27.03.01 "Standardization and metrology", 18.03.01 "Chemical technology", 20.03.01 "Technosphere safety", 15.03.06 "Mechatronics and robotics" of all forms of education studying the disciplines "Electrical Engineering", "Electrical Engineering and fundamentals of electronics", "Electrical Engineering and industrial electronics", "Electrical engineering, fundamentals of electronics and automation". Theoretical provisions, scientific, practical and methodological recommendations can be useful when studying the disciplines of the master's program " Electrotechnical complexes and systems. Energy saving".
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Mehrencev, Andrey, Vasiliy Azarenok i Eduard Gerc. Assorted wood harvesting. ru: INFRA-M Academic Publishing LLC., 2020. http://dx.doi.org/10.12737/1141213.

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The tutorial shows the possibility and feasibility of varietal wood harvesting using various machine systems, including harvester — forwarder complexes. The main forestry and technological parameters of various logging operations, their technological features and scope are also considered. It is intended for bachelors and undergraduates of higher educational institutions studying in the areas of Forestry", "technology of logging and wood processing industries", postgraduates of full-time and part-time training in the areas of "Forestry", "Biological Sciences", "Technologies, means of mechanization and power equipment in agriculture, forestry and fisheries", researchers, employees of forestry and environmental organizations. The issues discussed in the textbook are of interest to employees of forest enterprises of various forms of ownership and related industries engaged in logging."
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15

Zhang, Yongjun, Haoyong Chen i Honwing Ngan. Power System Optimization: Large-Scale Complex Systems Approaches. Wiley & Sons, Incorporated, John, 2017.

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Zhang, Yongjun, Haoyong Chen i Honwing Ngan. Power System Optimization: Large-Scale Complex Systems Approaches. Wiley & Sons, Incorporated, John, 2017.

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17

Zhang, Yongjun, Haoyong Chen i Honwing Ngan. Power System Optimization: Large-Scale Complex Systems Approaches. Wiley & Sons, Limited, John, 2016.

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18

Zhang, Yongjun, Haoyong Chen i Honwing Ngan. Power System Optimization: Large-Scale Complex Systems Approaches. Wiley & Sons, Limited, John, 2016.

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19

Monti, Antonello, i Andrea Benigni. Modeling and Simulation of Complex Power Systems. Institution of Engineering and Technology, 2022. http://dx.doi.org/10.1049/pbpo118e.

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20

Modelling and Simulation of Complex Power Systems. Institution of Engineering & Technology, 2020.

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21

Nocella, Anthony J. Global Industrial Complex: Systems of Domination. Lexington Books/Fortress Academic, 2011.

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22

Power, Autonomy, Utopia: New Approaches Toward Complex Systems. Springer, 2011.

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23

Power, Autonomy, Utopia: New Approaches Toward Complex Systems. Springer, 1986.

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24

Hindmarsh, E. Heat pumps in complex heat and power systems. Electric Power Research Institute, 1989.

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25

(Editor), Adrian Bejan, i Eden Mamut (Editor), red. Thermodynamic Optimization of Complex Energy Systems (Nato Science Partnership, 3). Springer, 1999.

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Holland, John H. 2. Complex physical systems (CPS). Oxford University Press, 2014. http://dx.doi.org/10.1093/actrade/9780199662548.003.0002.

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‘Complex physical systems’ considers the characteristics of complex physical systems (CPS), which are often geometric (specifically, lattice-like) arrays of elements, in which interactions typically depend only on effects propagated from nearest neighbors. The elements of a CPS follow fixed physical laws, usually expressed by differential equations—Newton’s laws of gravity and Maxwell’s laws of electromagnetism are cases in point. Neither the laws nor the elements change over time; only the positions of the elements change. CPS show several properties: self-organized criticality, self-similarity, scaling, and power laws. Examples of these properties—such as, snowflake curves, fractals, networks, dynamics, and symmetry-breaking—are discussed.
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27

Sullivan, John P. Emergent Learning: The Power of Complex Adaptive Systems in the Classroom. LAP Lambert Academic Publishing, 2010.

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28

Brown, James Ernest, i Drs. J.J. & Desiree Hurtak. Giza's Industrial Complex: Ancient Egypt's Electrical Power and Gas Generating Systems. BookBaby, 2019.

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29

Pecht, Michael G., i Prabhakar V. Varde. Risk-Based Engineering: An Integrated Approach to Complex Systems―Special Reference to Nuclear Plants. Springer, 2018.

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Pecht, Michael G., i Prabhakar V. Varde. Risk-Based Engineering: An Integrated Approach to Complex Systems―Special Reference to Nuclear Plants. Springer, 2019.

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31

Meng, Xiangping, i Zhaoyu Pian. Intelligent Coordinated Control of Complex Uncertain Systems for Power Distribution and Network Reliability. Elsevier, 2015.

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Meng, Xiangping, i Zhaoyu Pian. Intelligent Coordinated Control of Complex Uncertain Systems for Power Distribution and Network Reliability. Elsevier Science & Technology Books, 2015.

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33

Higgins, Karen L. Economic Growth and Sustainability: Systems Thinking for a Complex World. Elsevier Science & Technology Books, 2014.

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Economic Growth and Sustainability: Systems Thinking for a Complex World. Elsevier Science & Technology, 2014.

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Intelligent Coordinated Control of Complex Uncertain Systems for Power Distribution Network Reliability. Elsevier, 2016. http://dx.doi.org/10.1016/c2013-0-19155-6.

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Luckham, David. Power of Events: An Introduction to Complex Event Processing in Distributed Enterprise Systems. Pearson Education, Limited, 2002.

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The Power of Events: An Introduction to Complex Event Processing in Distributed Enterprise Systems. Addison-Wesley Professional, 2002.

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38

Leveraging Complexity in Great-Power Competition and Warfare: Technical Details for a Complex Adaptive Systems Lens. RAND Corporation, The, 2021.

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39

Dolgov, Alexandr P. Transitional regimes and stability of electric power systems. Novosibirsk State Technical University, 2022. http://dx.doi.org/10.17212/978-5-7782-4678-2.

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The issues of parallel operation of electrical systems are considered. Some major system crashes are described. The peculiarities of the electromechanical transition process in the electric power system are reflected. Angular characteristics of generator power, static characteristics of asynchronous motors and complex loads are analyzed. The main methods of analyzing the stability of electric power systems are described. The asynchronous mode is considered. Information on emergency automation used in modern conditions is given. The Park–Gorev equations are given; their place in the calculation of electromechanical transients of synchronous and asynchronous machines is mentioned. The issues of self-starting synchronous and asynchronous motors are considered. The material is accompanied by examples and control questions. The textbook meets the requirements of the State Educational Standard of Higher Professional Education for the preparation of bachelors in the direction "Electric Power and Electrical Engineering" (13.03.02 ) and masters in the direction "Electric Power and Electrical Engineering" (13.04.02). It can also be useful for graduate students.
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40

Lingel, Sherrill, Tim McDonald, Timothy R. Gulden, Matthew Sargent i Parousia Rockstroh. Leveraging Complexity in Great-Power Competition and Warfare: An Initial Exploration of How Complex Adaptive Systems Thinking Can Frame Opportunities and Challenges. RAND Corporation, The, 2021.

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41

Clegg, Stewart R., Christopher Biesenthal, Shankar Sankaran i Julien Pollack. Power and Sensemaking in Megaprojects. Redaktor Bent Flyvbjerg. Oxford University Press, 2017. http://dx.doi.org/10.1093/oxfordhb/9780198732242.013.9.

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Megaprojects are complex achievements of organization, sensemaking, and management of power relations. Typically, engineering practice stresses rationality and linearity, exemplified in the nineteenth-century roots of modern management in writers such as Taylor and Fayol. A concern with contingency theory and the emergence of project management standards hardly changed these auspices. The emergent focus on soft systems theory and a more recent interest in the practice turn did begin to change megaproject management representations somewhat. In practice, megaprojects are occasions for much complex sensemaking, as Weick defines the concept. In turn, where there are different interests in different sensemaking, then power practices and relations need to be brought into focus. The chapter does this through discussing a number of studies in which these issues have been the focus.
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42

Dowding, Keith. Social and Political Power. Oxford University Press, 2017. http://dx.doi.org/10.1093/acrefore/9780190228637.013.198.

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Power is a complex topic that is viewed in entirely different ways by different writers. Power can be seen as a property of agents, with some agents having more power than others. It can be seen as a property of social systems, where structures hold power. It can also be seen in terms of specific actions by people to coerce or dominate, or it can be regarded as a subliminal force that leads people to think and behave in one way rather than another. It can be analyzed descriptively to try to explain how it is distributed, and critically to argue for changing structures to provide a more egalitarian and fairer distribution.Power studies flourished in the great community power studies of the 1950s and 1960s. Some of these works suggested that democratic nations were controlled by powerful elites who ruled in their own interests; some that power was more widely distributed and elites could not simply rule for themselves; others that in capitalist societies, despite some counterexamples, elites generally ruled in favor of developers and capitalists. Later studies examined how people’s interests are defined in terms of the structural positions in which they find themselves, and how the very ways in which we think and express ourselves affect our individual powers.
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43

Lloyd, S. A. Locating Sovereignty in Systems of Divided and Limited Government. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780190922542.003.0007.

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Thomas Hobbes famously mounted a regress argument intended to show that unless sovereignty is undivided and unlimited, stable and effective government is impossible. This chapter examines the implications of that argument for complex systems of government such as that of the United States and makes the case that such systems may evade the dilemma Hobbes poses if they are determinately rule-governed. The discussion covers such elements of Hobbes’s view as the sovereign as an artificial person, the puzzle of the sovereign assembly, Hobbes’s arguments against both divided sovereignty and limited sovereignty, and the location of sovereignty in complex systems. It also notes that enforcement power must follow the location of decision authority, and asks who bears moral responsibility for the sovereign’s actions in complex systems.
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Howe, George W., i Laura Mlynarski. Coercion, Power, and Control in Interdependent Relationships. Redaktorzy Thomas J. Dishion i James Snyder. Oxford University Press, 2015. http://dx.doi.org/10.1093/oxfordhb/9780199324552.013.28.

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Children must learn to navigate the complex world of social interdependence. This chapter discusses the central characteristics of interdependent interaction, reviewing recent research from social psychology. It then explores the repertoire of skill necessary for successful navigation of interdependence, and how rigid coercive aggression might impede success. It combines a dynamic systems framework with developmental and family research on social interaction in dyads and larger groups. In this view, elements of emotion, thought, and action assemble at each moment during real-time interaction, conditioning and being conditioned by the ongoing flow of that interaction. These elements come to form coordinated ensembles at the individual, dyad, and group level, and over time self-stabilize into coherent styles, including coercive aggression and prosocial orientations. The chapter then focuses on how these styles develop, and concludes with discussion of directions for future research and intervention.
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Pauly, Louis W., i Bruce W. Jentleson. Power in a Complex Global System. Taylor & Francis Group, 2014.

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Pauly, Louis W., i Bruce W. Jentleson. Power in a Complex Global System. Taylor & Francis Group, 2014.

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47

Pauly, Louis W. Power in a Complex Global System. Routledge, 2014. http://dx.doi.org/10.4324/9781315817125.

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Pauly, Louis W., i Bruce W. Jentleson. Power in a Complex Global System. Taylor & Francis Group, 2014.

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Power in a Complex Global System. Routledge, 2014.

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Power in a Complex Global System. Routledge, 2014.

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