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1

Garland, Laurin A. Regenerative braking system development: Phase I. The Centre, 1993.

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2

Micke, Sigmar. Vehicle optimized braking distribution and an electronically controlled braking system for trucks. typescript, 1992.

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3

C, Christodoulidis D., and Goddard Space Flight Center, eds. Observed tidal braking in the earth/moon/sun system. National Aeronautics and Space Administration, Goddard Space Flight Center, 1987.

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4

Center, Langley Research, ed. Automatic braking system modification for the Advanced Transport Operating System (ATOPS) Transportation System Research Vehicle (TSRV). National Aeronautics and Space Administration, Langley Research Center, 1986.

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5

Harold, Douglas W. Analysis and design of a suboptimal, adaptive automatic braking system. Naval Postgraduate School, 1988.

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6

W, Birch Thomas. Automotive braking systems. 3rd ed. Delmar Publishers, 1998.

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7

W, Birch Thomas. Automotive braking systems. Harcourt Brace Jovanovich, Technology Publications, 1988.

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8

Thiessen, F. J. Automotive braking systems. Prentice-Hall, 1987.

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9

Chuvikov, Dmitriy. Models and algorithms for reconstruction and examination of emergency events of road accidents based on logical artificial intelligence. 2nd ed. INFRA-M Academic Publishing LLC., 2021. http://dx.doi.org/10.12737/1220729.

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The purpose of the monograph is to create a methodology, combined expert and simulation models, as well as algorithms and software-modeling tools for reconstruction and examination of accident events for automating decision-making by an expert center employee.
 The methodology of combining and algorithms of joint work of an expert system based on logical artificial intelligence (mivar approach) and a simulation system for solving problems of reconstruction and examination of road accidents are developed; model reconstruction and examination of the accident in the formalism of the knowledg
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10

GmbH, Robert Bosch, ed. Symbols: Compressed-air braking systems. Bosch, 1986.

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11

Joselyn, Joss. How to restore braking systems. Osprey, 1985.

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12

Institution of Mechanical Engineers (Great Britain) and Institution of Mechanical Engineers (Great Britain). Automobile Division., eds. Electronic braking systems: 17 September 1996. Mechanical Engineering Publications for the Institution of Mechanical Engineers, 1996.

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13

Payne, Andrew Howard. The hinged moment at the feet in human movement: A study of the lean-back, braking forces and the hinged momentin human movement using a purpose-built platform system. University of Birmingham, 1985.

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14

Savaresi, Sergio M., and Mara Tanelli. Active Braking Control Systems Design for Vehicles. Springer London, 2010. http://dx.doi.org/10.1007/978-1-84996-350-3.

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15

Savaresi, Sergio M. Active braking control systems design for vehicles. Springer Verlag, 2010.

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16

K, Jurgen Ronald, ed. Electronic braking, traction, and stability control. Society of Automotive Engineers, 1999.

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17

Brady, Robert N. Heavy-duty truck suspension, steering, and braking systems. Prentice Hall, 1989.

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18

Robinson, B. J. A study of various car anti-lock braking systems. Transport and Road Research Laboratory, 1991.

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19

Buckman, Leonard C. Commercial vehicle braking systems: Air brakes, ABS and beyond. Society of Automotive Engineers, Inc., 1998.

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20

Jurgen, Ronald K., ed. Electric and Hybrid-Electric Vehicles - Braking Systems and NVH Considerations. SAE International, 2010. http://dx.doi.org/10.4271/pt-143/4.

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21

Engineers, Society of Automotive, ed. Electronics in commercial vehicle braking and steering systems: SP-753. Society of Automotive Engineers, 1988.

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22

Engineers, Society of Automotive, and International Truck and Bus Meeting & Exposition (1994 : Seattle, Wash.), eds. Heavy vehicle dynamics and simulation in braking, steering, and suspension systems. Society of Automotive Engineers, 1994.

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23

Martin, Rowell J., Gritt Paul S, and Society of Automotive Engineers. Passenger Car Brake Activity Committee., eds. Anti-lock braking systems for passenger cars and light trucks, a review: Selected papers through 1986. Society of Automotive Engineers, 1987.

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24

United States. National Highway Traffic Safety Administration, ed. Antilock braking systems (ABS): Reading this could be one of the safest things you ever do. U.S. Dept. of Transportation, National Highway Traffic Safety Administration, 2000.

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25

United States. National Highway Traffic Safety Administration, ed. An in-service evaluation of the performance, reliability, maintainability, and durability of antilock braking systems (ABSs) for semitrailers: Final report. U.S. National Highway Traffic Safety Administration, 1993.

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26

United States. National Highway Traffic Safety Administration., ed. An in-service evaluation of the performance, reliability, maintainability, and durability of antilock braking systems (ABSs) for semitrailers: Final report. U.S. National Highway Traffic Safety Administration, 1993.

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27

United States. National Highway Traffic Safety Administration, ed. An in-service evaluation of the performance, reliability, maintainability, and durability of antilock braking systems (ABSs) for semitrailers: Final report. U.S. National Highway Traffic Safety Administration, 1993.

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28

United States. National Highway Traffic Safety Administration., ed. An in-service evaluation of the performance, reliability, maintainability, and durability of antilock braking systems (ABSs) for semitrailers: Final report. U.S. National Highway Traffic Safety Administration, 1993.

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29

United States. National Highway Traffic Safety Administration., ed. An in-service evaluation of the performance, reliability, maintainability, and durability of antilock braking systems (ABSs) for semitrailers: Final report. U.S. National Highway Traffic Safety Administration, 1993.

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30

Garshin, Anatoliy, Aleksey Nilov, and Viktor Kulik. Friction fiber-reinforced ceramic-matrix composite materials. INFRA-M Academic Publishing LLC., 2023. http://dx.doi.org/10.12737/1989212.

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The monograph summarizes the results of the analysis of the main features of fiber-reinforced composite materials with a ceramic matrix and fiber fillers used for their reinforcement. The main technological methods of obtaining ceramic-matrix composites based on solid, gas and liquid-phase processes are considered. The results of the assessment of the current state and prospects for the development of friction elements in braking systems of high-energy transport equipment are presented. The main directions of increasing the corrosion, heat and wear resistance of composite materials with a cera
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31

Manuals, Inc Mitchell. Antilock Braking System (Abs90). Mitchell Intl, 1990.

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32

Raschio, Peter J. Evaluation of dynamically controlled resistive braking for the Pacific Northwest power system. 1994.

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33

Birch, Tom. Automotive Braking Systems. 3rd ed. Cengage Delmar Learning, 1999.

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34

Automotive braking systems. Reston Pub. Co., 1985.

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35

Automotive braking systems. Saunders College Pub., 1994.

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36

Greaney, Andrew. Powertrain Technology - Braking Systems. Independently Published, 2017.

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37

International, Mitchell. Mitchell Automotive Braking Systems. Prentice Hall, 1989.

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38

Smith, Steve. Race Car Braking Systems. Steve Smith Autosports, 1994.

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39

Anti-lock Braking Systems. Haynes Manuals Inc, 2001.

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40

Suharevs, Artūrs. Research of Aircraft Ground Path Control Devices and Optimization at Takeoff and Landing Stages. RTU Press, 2022. http://dx.doi.org/10.7250/9789934227684.

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This Thesis presents a universal method for determining the airplane braking and takeoff paths using the output data from the inertial navigation system and auxiliary systems. The result is a designed and assembled electronic device, based on the algorithm that determines how many meters are left to safely stop the aircraft or to the point of separation from ground in the case of takeoff. The device is designed to facilitate the work of an aircrew, increase the safety of flights, as well as to more efficiently use the resources of the aircraft.
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41

Goodnight, Nicholas. Automotive Braking Systems with 1 Year Access to Automotive Braking Systems ONLINE. Jones & Bartlett Learning, LLC, 2019.

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42

Jurgen, Ronald K. Braking Systems and NVH Considerations. SAE International, 2010.

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43

Thiessen, Frank. Automotive Steering, Suspension and Braking Systems. Restoring the Earth, 1996.

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44

IMechE. Electronic Braking Systems (IMechE Seminar Publications). Professional Engineering Publishing, 1996.

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45

How to Restore Braking Systems (109508a). Osprey Pub Co, 1986.

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46

Automotive brakes and antilock braking systems. West Pub. Co., 1995.

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47

[folder] Light truck rear antilock braking systems. The Department, 1991.

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48

Savaresi, Sergio M., and Mara Tanelli. Active Braking Control Systems Design for Vehicles. Springer London, Limited, 2011.

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49

Savaresi, Sergio M., and Mara Tanelli. Active Braking Control Systems Design for Vehicles. Springer, 2014.

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50

Automotive Braking Systems: CDX Master Automotive Technician Series. Jones & Bartlett Learning, 2018.

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