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1

Maurer, Markus, J. Christian Gerdes, Barbara Lenz und Hermann Winner, Hrsg. Autonomous Driving. Berlin, Heidelberg: Springer Berlin Heidelberg, 2016. http://dx.doi.org/10.1007/978-3-662-48847-8.

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2

Chai, Zhanxiang, Tianxin Nie und Jan Becker. Autonomous Driving Changes the Future. Singapore: Springer Singapore, 2021. http://dx.doi.org/10.1007/978-981-15-6728-5.

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3

Langheim, Jochen, Hrsg. Energy Consumption and Autonomous Driving. Cham: Springer International Publishing, 2016. http://dx.doi.org/10.1007/978-3-319-19818-7.

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4

Jurgen, Ronald K. Autonomous Vehicles for Safer Driving. Warrendale, PA: SAE International, 2013. http://dx.doi.org/10.4271/pt-158.

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5

Autonomous vehicles for safer driving. Warrendale, Pennsylvania, USA: SAE International, 2013.

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6

Jurgen, Ronald K., Hrsg. Autonomous Vehicles for Safer Driving. Warrendale, PA: SAE International, 2013. http://dx.doi.org/10.4271/0768080398.

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7

Gamba, Jonah. Radar Signal Processing for Autonomous Driving. Singapore: Springer Singapore, 2020. http://dx.doi.org/10.1007/978-981-13-9193-4.

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8

Gupta, Nishu, Arun Prakash und Rajeev Tripathi, Hrsg. Internet of Vehicles and its Applications in Autonomous Driving. Cham: Springer International Publishing, 2021. http://dx.doi.org/10.1007/978-3-030-46335-9.

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9

Marsico, Katie. Self-driving cars. New York, NY: Children's Press, 2016.

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10

Waschl, Harald, Ilya Kolmanovsky und Frank Willems, Hrsg. Control Strategies for Advanced Driver Assistance Systems and Autonomous Driving Functions. Cham: Springer International Publishing, 2019. http://dx.doi.org/10.1007/978-3-319-91569-2.

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11

Cool self-driving cars. Minneapolis: LernerClassroom, 2019.

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12

Trimble, Tammy E., Stephanie Baker, Jason Wagner, Wendy Wagner, Lisa Loftus-Otway, Brad Mallory, Susanna Gallun et al. Implications of Connected and Automated Driving Systems, Vol. 4: Autonomous Vehicle Action Plan. Washington, D.C.: Transportation Research Board, 2018. http://dx.doi.org/10.17226/25292.

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13

Trimble, Tammy E., Stephanie Baker, Jason Wagner, Myra Blanoo, Wendy Wagner, Lisa Loftus-Otway, Brad Mallory et al. Implications of Connected and Automated Driving Systems, Vol. 5: Developing the Autonomous Vehicle Action Plan. Washington, D.C.: Transportation Research Board, 2018. http://dx.doi.org/10.17226/25291.

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14

Zuev, Sergey, Ruslan Maleev und Aleksandr Chernov. Energy efficiency of electrical equipment systems of autonomous objects. ru: INFRA-M Academic Publishing LLC., 2021. http://dx.doi.org/10.12737/1740252.

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When considering the main trends in the development of modern autonomous objects (aircraft, combat vehicles, motor vehicles, floating vehicles, agricultural machines, etc.) in recent decades, two key areas can be identified. The first direction is associated with the improvement of traditional designs of autonomous objects (AO) with an internal combustion engine (ICE) or a gas turbine engine (GTD). The second direction is connected with the creation of new types of joint-stock companies, namely electric joint-stock companies( EAO), joint-stock companies with combined power plants (AOKEU). The energy efficiency is largely determined by the power of the generator set and the battery, which is given to the electrical network in various driving modes. Most of the existing methods for calculating power supply systems use the average values of disturbing factors (generator speed, current of electric energy consumers, voltage in the on-board network) when choosing the characteristics of the generator set and the battery. At the same time, it is obvious that when operating a motor vehicle, these parameters change depending on the driving mode. Modern methods of selecting the main parameters and characteristics of the power supply system do not provide for modeling its interaction with the power unit start-up system of a motor vehicle in operation due to the lack of a systematic approach. The choice of a generator set and a battery, as well as the concept of the synthesis of the power supply system is a problem studied in the monograph. For all those interested in electrical engineering and electronics.
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15

How autonomous vehicles will shape the future of surface transportation: Hearing before the Subcommittee on Highways and Transit of the Committee on Transportation and Infrastructure, House of Representatives, One Hundred Thirteenth Congress, first session, November 19, 2013. Washington: U.S. Government Printing Office, 2014.

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16

Future ride: 80 ways the self-driving, autonomous car will change everything from buying groceries to teen romance to surviving a hurricane to turning ten to having a heart attack to building a dream home to simply getting from here to there. San Bernardino, California]: [Peter Wayner], 2014.

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17

Autonomous Driving. Emerald Publishing Limited, 2018.

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18

Zivic, Natasa, und Obaid Ur-Rehman. Security in Autonomous Driving. de Gruyter GmbH, Walter, 2020.

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19

Zivic, Natasa, und Obaid Ur-Rehman. Security in Autonomous Driving. de Gruyter GmbH, Walter, 2020.

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20

Zivic, Natasa, und Obaid Ur-Rehman. Security in Autonomous Driving. de Gruyter GmbH, Walter, 2020.

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21

Becker, Jan, Zhanxiang Chai und Tianxin Nie. Autonomous Driving Changes the Future. Springer, 2020.

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22

Becker, Jan, Zhanxiang Chai und Tianxin Nie. Autonomous Driving Changes the Future. Springer, 2020.

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23

Gamba, Jonah. Radar Signal Processing for Autonomous Driving. Springer, 2019.

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24

Lenz, Barbara, Hermann Winner, Markus Maurer und J. Christian Gerdes. Autonomous Driving: Technical, Legal and Social Aspects. Springer, 2016.

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25

Lenz, Barbara, Hermann Winner, Markus Maurer und J. Christian Gerdes. Autonomous Driving: Technical, Legal and Social Aspects. Springer, 2018.

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26

Autonomous Driving: How the Driverless Revolution Will Change the World. Emerald Publishing Limited, 2018.

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27

Autonomous Driving: How the Driverless Revolution Will Change the World. Emerald Publishing Limited, 2018.

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28

Gupta, Nishu, Arun Prakash und Rajeev Tripathi. Internet of Vehicles and its Applications in Autonomous Driving. Springer, 2020.

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29

Self-Driving Car. Norwood House Pr, 2016.

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30

Self-Driving Car. Norwood House Press, 2016.

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31

Sjafrie, Hanky. Introduction to Self-Driving Vehicle Technology. Taylor & Francis Group, 2019.

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32

Sjafrie, Hanky. Introduction to Self-Driving Vehicle Technology. Taylor & Francis Group, 2019.

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33

Sjafrie, Hanky. Introduction to Self-Driving Vehicle Technology. Taylor & Francis Group, 2019.

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34

Sjafrie, Hanky. Introduction to Self-Driving Vehicle Technology. Taylor & Francis Group, 2019.

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35

Introduction to Self-Driving Vehicle Technology. Taylor & Francis Group, 2019.

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36

Jones, Roy W. Safety, legal issues and driving. Oxford University Press, 2011. http://dx.doi.org/10.1093/med/9780199569854.003.0010.

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• A person with dementia’s autonomy must be respected as far as possible and recognition given to their remaining abilities and rights• People with dementia usually reach a point where they cannot manage their own legal and financial affairs• The capacity needed to make a particular decision depends on the nature and complexity of the decision...
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37

End of Driving: Transportation Systems and Public Policy Planning for Autonomous Vehicles. Elsevier, 2018.

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38

Davies, Alex. Driven: The Race to Create the Autonomous Car. Simon & Schuster, 2020.

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39

Driven: The Race to Create the Autonomous Car. Simon & Schuster, Limited, 2020.

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40

Davies, Alex. Driven: The Race to Create the Autonomous Car. Simon & Schuster, 2021.

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41

Loh, Wulf, und Janina Loh. Autonomy and Responsibility in Hybrid Systems. Oxford University Press, 2017. http://dx.doi.org/10.1093/oso/9780190652951.003.0003.

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In this chapter, we give a brief overview of the traditional notion of responsibility and introduce a concept of distributed responsibility within a responsibility network of engineers, driver, and autonomous driving system. In order to evaluate this concept, we explore the notion of man–machine hybrid systems with regard to self-driving cars and conclude that the unit comprising the car and the operator/driver consists of such a hybrid system that can assume a shared responsibility different from the responsibility of other actors in the responsibility network. Discussing certain moral dilemma situations that are structured much like trolley cases, we deduce that as long as there is something like a driver in autonomous cars as part of the hybrid system, she will have to bear the responsibility for making the morally relevant decisions that are not covered by traffic rules.
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42

Jones, Roy W. Safety, legal issues, and driving. Oxford University Press, 2017. http://dx.doi.org/10.1093/med/9780198779803.003.0012.

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This chapter describes the many practical and legal issues that are important for people with dementia and their families. A person with dementia’s autonomy must be respected together with recognition of their remaining abilities. The capacity needed for a particular decision depends on the nature and complexity of the decision. Capacity to deal with financial affairs is discussed, together with capacity to make a will, to make decisions about personal welfare, medical treatment, and consent for research including genetic testing. Whilst there are many potential safety issues for people with dementia, it is important to balance the need for protection with their continuing independence. Safety within the home includes fire, gas, and electrical safety; kitchen safety; risk of falls; risk from dangerous substances and medications; and vulnerability. Safety outside the home includes the risk of falls together with wandering, getting lost, and issues around driving.
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43

Langheim, Jochen. Energy Consumption and Autonomous Driving: Proceedings of the 3rd CESA Automotive Electronics Congress, Paris, 2014. Springer, 2016.

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44

Robot, Take the Wheel: The Road to Autonomous Cars and the Lost Art of Driving. Apollo Publishers, 2019.

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45

Langheim, Jochen. Energy Consumption and Autonomous Driving: Proceedings of the 3rd CESA Automotive Electronics Congress, Paris, 2014. Springer, 2015.

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46

Waschl, Harald, Ilya Kolmanovsky und Frank Willems. Control Strategies for Advanced Driver Assistance Systems and Autonomous Driving Functions: Development, Testing and Verification. Springer, 2019.

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47

Waschl, Harald, Ilya Kolmanovsky und Frank Willems. Control Strategies for Advanced Driver Assistance Systems and Autonomous Driving Functions: Development, Testing and Verification. Springer, 2018.

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48

Neckermann, Lukas, und Frederic John. Being Driven: A Study on Human Adoption Ownership of Autonomous Vehicles. Troubador Publishing Limited, 2020.

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49

Kalra, Nidhi, und Susan Paddock. Next Stop, Neptune? Why We Can't Rely on Test-Driving Alone to Assess the Safety of Autonomous Vehicles. RAND Corporation, 2016. http://dx.doi.org/10.7249/ig128.

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50

The Darpa Urban Challenge Autonomous Vehicles In City Traffic. Springer, 2009.

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