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1

Cheema, Muhammad Ali Masood, and John Edward Fletcher. Advanced Direct Thrust Force Control of Linear Permanent Magnet Synchronous Motor. Cham: Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-40325-6.

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2

Cho, David Ming Kei. Multiple simultaneous specification (MSS) control of brushless D.C. motor and high-speed linear positioning system. Ottawa: National Library of Canada, 1999.

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3

Elmas, Çetin. A position sensorless operation of a switched reluctance motor drive based on a non-linear observer. Birmingham: University of Birmingham, 1993.

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4

Peter, Gaspar, Bokor Jozsef, and SpringerLink (Online service), eds. Robust Control and Linear Parameter Varying Approaches: Application to Vehicle Dynamics. Berlin, Heidelberg: Springer Berlin Heidelberg, 2013.

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5

Gastel, Saskia van. Food consumption and mental and motor development in relation to linear growth retardation in rural Zambian children. Wageningen, Netherlands: Dept. of Human Nutrition, Wageningen Agricultural University, 1995.

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6

Shorten, Robert Noel. A study of hybrid dynamical systems with application to automobile control. Dublin: University College Dublin, 1996.

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7

Rauch, Jeffrey. Transient and steady-state tests of the space power research engine with resistive and motor loads. [Washington, DC]: National Aeronautics and Space Administration, 1995.

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8

Rauch, Jeffrey. Transient and steady-state tests of the space power research engine with resistive and motor loads. [Washington, DC]: National Aeronautics and Space Administration, 1995.

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9

Rauch, Jeffrey. Transient and steady-state tests of the space power research engine with resistive and motor loads. [Washington, DC]: National Aeronautics and Space Administration, 1995.

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10

Rauch, Jeffrey. Transient and steady-state tests of the space power research engine with resistive and motor loads. [Washington, DC]: National Aeronautics and Space Administration, 1995.

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11

Nguyen-Schäfer, Hung. Rotordynamics of Automotive Turbochargers: Linear and Nonlinear Rotordynamics – Bearing Design – Rotor Balancing. Berlin, Heidelberg: Springer Berlin Heidelberg, 2012.

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12

Gieras, Jacek F. Linear induction drives. Oxford: Clarendon Press, 1994.

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13

Permanent-magnet DC linear motors. Oxford: Clarendon Press, 1996.

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14

A, Nasar S., ed. Linear motion electromagnetic systems. New York: Wiley, 1985.

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15

Nasar, S. A. Linear electric motors: Theory, design, and practical applications. Englewood Cliffs, N.J: Prentice-Hall, 1987.

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16

Laithwaite, E. R. A history of linear electric motors. Basingstoke: Macmillan, 1987.

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17

Dawson, G. E. International program on linear electric motors. Kingston: Canadian Institute of Guided Ground Transport, 1992.

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18

Laithwaite, Eric R. A History of Linear Electric Motors. London: Macmillan Education UK, 1987. http://dx.doi.org/10.1007/978-1-349-08296-4.

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19

J, Piech Zbigniew, and Tomczuk Bronisław Zbigniew, eds. Linear synchronous motors: Transportation and automation systems. 2nd ed. Boca Raton: Taylor & Francis, 2012.

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20

Mikulik, Jerzy. Modelowanie indukcyjnych silników liniowych z uzwojoną częścią wtórną. Kraków: Politechnika Krakowska, 1996.

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21

Kim, Nŭng-su. Liniŏ motʻŏ ŭi kisul hyŏnhwang mit ŭngyong: Chʻogosok yŏlchʻa mit chadonghwa sŏlbi ŭi chʻasedae haeksim kisul. Sŏul Tʻŭkpyŏlsi: Sanŏp Yŏnʼguwŏn, 1989.

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22

International, Conference on Magnetically Levitated Systems (Maglev) (14th 1995 Bremen Germany). MAGLEV '95: 14th International Conference on Magnetically Levitated Systems : November 26-29, 1995, Hotel Maritim Bremen, Germany. Berlin: VDE-Verlag, 1995.

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23

Salo, Jussi. Design and analysis of a transversal-flux switched-reluctance-linear-machine pole-pair. Lappeenranta, Finland: Lappeenranta University of Technology, 1999.

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24

Wild, Harald G. Robust control of high dynamic machine drives employing linear motors. London: University of East London, 1999.

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25

Bellei, Gianluigi. François Bonjour: "il moto e la linea". Chiasso: Mosaico, 2006.

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26

Bocharov, V. I. Osnovy proektirovanii͡a︡ ėlektropodvizhnogo sostava s magnitnym podvesom i lineĭnym ti͡a︡govym ėlektroprivodom. Rostov-na-Donu: Izd-vo Rostovskogo universiteta, 1992.

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27

Gao wen chao dao zhi xian dian ji: High temperature superconducting linear motors. Beijing: Ke xue chu ban she, 2011.

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28

International, Conference on Maglev &. Linear Drives (1986 Vancouver B. C. ). International Conference on Maglev & Linear Drives: An Expo '86 Specialized Periods endorsed event, joint session with the Fourth World Conference on Transport Research, Ming Court Hotel, Vancouver, British Columbia, May 14-16, 1986. New York, NY (345 E. 47th St., New York 10017): Institute of Electrical and Electronics Engineers, 1986.

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29

International Conference on Maglev & Linear Drives (1987 Las Vegas, Nev.). International Conference on Maglev and Linear Drives, Bally's, Las Vegas, May 19-21, 1987. New York, N.Y. (345 E. 47th St., New York 10017): IEEE, 1987.

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30

Marcello, Pucci, and Vitale Gianpaolo, eds. Power converters and AC electrical drives with linear neutral networks. Boca Raton: CRC Press, 2012.

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31

(Japan), Saitama-ken. Ōmiya Narita o musubu rinia mōta kā chōsa kenkyū hōkokusho: 21-seiki o kakeru kōtsū shisutemu. [Urawa-shi]: Saitama-ken, 1986.

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32

Rinia tobu. Tōkyō: Nihon Keizai Shinbunsha, 1989.

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33

(Japan), Saitama-ken. Ōmiya Narita kan kōsoku fujōshiki rinia mōta kā dōnyū ni kansuru gaikatsu chōsa hōkokusho. [Urawa-shi]: Saitama-ken, 1987.

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34

Abunai rinia shinkansen. Tōkyō-to Bunkyō-ku: Ryokufū Shuppan, 2013.

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35

Hashiyama, Reijirō. Hitsuyō ka, rinia shinkansen. Tōkyō: Iwanami Shoten, 2011.

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36

Fokin, Sergey, and Oksana Shport'ko. Logging production: technologies and equipment. ru: INFRA-M Academic Publishing LLC., 2021. http://dx.doi.org/10.12737/1058986.

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The textbook discusses the main stages of logging operations and forest transport, as well as technologies and types of equipment for performing work on lower timber yards, including technologies for stacking, loading and dumping of harvested timber. A separate chapter of the book is devoted to the issues of ensuring safety during these works. A detailed description of the construction of logging machines, motor tools, vehicles, machines, aggregates and lines for primary processing of wood (stumping of branches, bucking and cutting of whips, debarking of sorts), lifting and transport machines and devices is given. Meets the requirements of the federal state educational standards of higher education of the latest generation. It is intended for students in the field of training 35.03.01 "Forestry" and in the specialty 35.02.02 "Logging technology".
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37

Bogumil, Veniamin, and Sarango Duke. Telematics on urban passenger transport. ru: INFRA-M Academic Publishing LLC., 2022. http://dx.doi.org/10.12737/1819882.

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The monograph discusses the application of telematics in dispatch control systems in urban passenger transport. The role of telematics as a technological basis in automating the solution of control tasks, accounting and analysis of the volume and quality of transport work in modern dispatch control systems on urban passenger transport is shown. Analytical models have been developed to estimate the capacity of a high-speed bus transportation system on a dedicated line. Mathematical models and algorithms for predicting passenger vehicle interior filling at critical stages of urban passenger transport routes are presented. The issues of application of the concept of the phase space of states introduced by the authors to assess the quality of the passenger transportation process on the route of urban passenger transport are described. The developed classification of service levels and their application in order to inform passengers at stopping points about the degree of filling of the passenger compartment of the arriving vehicle is described. The material is based on the results of theoretical research and practical work on the creation and implementation of automated control systems for urban passenger transport in Russian cities. The material of M.H. Duque Sarango's dissertation submitted for the degree of Candidate of Technical Sciences in the specialty 05.22.10 "Operation of motor transport" was used. It will be useful to specialists in the field of telematics on urban passenger transport.
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38

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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39

Gupta, Deepak K. Transportation of ferromagnetic powder using linear motor devices. 1994.

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40

Cheema, Muhammad Ali Masood, and John Edward Fletcher. Advanced Direct Thrust Force Control of Linear Permanent Magnet Synchronous Motor. Springer, 2020.

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41

Jer-Nan, Juang, Horta Lucas G, and Langley Research Center, eds. A velocity command stepper motor for CSI application. Hampton, Va: NASA Langley Research Center, 1991.

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42

Evans, Steven Andrew. Design and optimization of a permanent magnet linear reluctance motor for reciprocating electro-mechanical systems. 1996.

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43

Bokor, József, Olivier Sename, and Peter Gaspar. Robust Control and Linear Parameter Varying Approaches: Application to Vehicle Dynamics. Springer, 2013.

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44

Nguyen-Schäfer, Hung. Rotordynamics of Automotive Turbochargers: Linear and Nonlinear Rotordynamics - Bearing Design - Rotor Balancing. Springer, 2012.

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45

Nguyen-Schäfer, Hung. Rotordynamics of Automotive Turbochargers: Linear and Nonlinear Rotordynamics – Bearing Design – Rotor Balancing. Springer, 2012.

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46

Gieras, Jacek, and Zbigniew Piech. Linear Synchronous Motors. CRC Press, 1999. http://dx.doi.org/10.1201/9781420049732.

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47

History of Linear Electric Motors. San Francisco Press, Incorporated, 1987.

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48

Tian, Zhou. Linear motors for lift applications. 1997.

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49

Piech, Zbigniew J., and Jacek F. Gieras. Linear Synchronous Motors: Transportation and Automation Systems. CRC, 1999.

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50

J, Piech Zbigniew, and Gieras Jacek F, eds. Linear synchronous motors: Transportation and automation systems. Boca Raton, Fla: CRC Press, 2000.

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