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1

As, S. C. van. Traffic flow theory. 3rd ed. [Pretoria]: SARB Chair in Transportation Engineering, Dept. of Civil Engineering, University of Pretoria, 1990.

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2

Traffic flow fundamentals. Englewood Cliffs, N.J: Prentice Hall, 1990.

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3

Urban spatial traffic patterns. London: Pion, 1987.

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4

Gaver, Donald Paul. "Processor-shared time-sharing models in heavy traffic". Monterey, Calif: Naval Postgraduate School, 1985.

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5

Sylvain, Lassarre, ed. Structural road accident models: The international DRAG family. New York: Pergamon, 2000.

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6

Aerde, M. Van. Review of freeway corridor traffic models. Downsview, Ont: Research and Development Branch, 1987.

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7

Puppo, Gabriella, and Andrea Tosin, eds. Mathematical Descriptions of Traffic Flow: Micro, Macro and Kinetic Models. Cham: Springer International Publishing, 2021. http://dx.doi.org/10.1007/978-3-030-66560-9.

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8

Fricke, Lynn B. Traffic accident reconstruction. Evanston, Ill: Northwestern University, Traffic Institute, 1990.

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9

McGill, R. Fuel consumption and emission values for traffic models. McLean, Va: U.S. Dept. of Transportation, Federal Highway Administration, 1985.

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10

Salter, Richard J. Traffic engineering: Worked examples. 2nd ed. Houndmills, Basingstoke, Hampshire: Macmillan, 1989.

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11

Embulaev, V. N. Nauchno-metodicheskie osnovy upravlenii︠a︡ transportnoĭ sistemoĭ krupnogo goroda. Vladivostok: Dalʹnauka, 2004.

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12

Boldizsár, Vásárhelyi. A közúti forgalom lefolyásának szimulációja. Budapest: Közlekedési Dokumentációs Vállalat, 1985.

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13

Yong, Zhou. Schätzung der Verkehrsbeziehungen bei unvollständiger Information und deren Anwendung bei der Verkehrssteuerung. München: Technische Universität München, 2001.

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14

Helbing, Dirk. Verkehrsdynamik: Neue physikalische Modellierungskonzepte. Berlin: Springer, 1997.

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15

Hummer, Joseph E. Operational capacity of three-lane cross-sections. Raleigh, NC: Center for Transportation Engineering Studies, Dept. of Civil Engineering, North Carolina State University, 2000.

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16

Luspay, Tamás. Forgalomirányítás: Közúti járműforgalom modellezése és irányítása. Budapest: Typotex, 2011.

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17

Leutzbach, Wilhelm. Introduction to the theory of traffic flow. Berlin: Springer-Verlag, 1988.

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18

Rivers, R. W. Speed analysis for traffic accident investigation. 2nd ed. Jacksonville, Fla: Institute of Police Technology and Management, University of North Florida, 1997.

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19

Bowlby, William. Predicting stop-and-go traffic noise levels. Washington, D.C: Transportation Research Board, National Research Council, 1989.

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20

Switching processes in queueing models. London, UK : ISTE: John Wiley & Sons, 2008.

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21

Cooper, Gary W. Work, energy, and speed from damage in traffic accidents: Topic 870 of The traffic-accident investigation manual. Evanston, Ill. (P.O. Box 1409, Evanston 60204): Northwestern University Traffic Institute, 1989.

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22

Smulders, S. A. Control of freeway traffic flow. Amsterdam, Netherlands: Centrum voor Wiskunde en Informatica, 1996.

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23

Bonnett, George M. Anatomy of the collision: Energy, momentum, restitution and the reconstructionist. 2nd ed. Jacksonville, Fla: Institute of Police Technology and Management, University of North Florida, 2006.

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24

Baker, J. Stannard. Speed estimates for vehicles that fall, flip, or vault: Topic 866 of the Traffic-accident investigation manual. Evanston, Ill. (P.O. Box 1409, Evanston 60204): Northwestern University Traffic Institute, 1989.

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25

Lofgren, M. J. Handbook for the accident reconstructionist. 3rd ed. Jacksonville, Fla. (4567 St. Johns Bluff Road, South, Jacksonville 32216): Institute of Police Technology and Management, University of North Florida, 1988.

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26

Optimal urban networks via mass transportation. Berlin: Springer, 2008.

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27

Morley, Kimberly Ann. Econometric estimation of peak spreading in the Seattle metropolitan area. [Olympia]: Washington State Dept. of Transportation, 1998.

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28

Yŏn'guwŏn, Han'guk Kaebal, ed. Min'gan t'uja toro saŏp ŭi kyot'ong suyo yech'ŭk wihŏm kach'i. Sŏul T'ŭkpyŏlsi: Han'guk Kaebal Yŏn'guwŏn, 2012.

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29

Schroter, V. ORNAMENT: Ontario road noise analysis method for environment and transportation : technical document. Ontario: Ontario Environment, 1989.

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30

Obst, Elmar. Modellversuche im öffentlichen Personennahverkehr (ÖPNV) im ländlichen Raum: Ziele, Möglichkeiten, Grenzen. Neubiberg: Universität der Bundeswehr München, 1987.

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31

D, Griffiths J., ed. Mathematics in transport planning and control: Proceedings of the 3rd IMA International Conference on Mathematics in Transport Planning and Control. Amsterdam: Pergamon, 1998.

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32

Ontario. Ministry of Transportation. Research and Development Branch., ed. Modelling of integrated traffic networks using the Integration simulation model. [Downsview]: Research and Development Branch, Ontario Ministry of Transportation, 1990.

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33

Cooper, Gary W. Derivations of equations for traffic accident reconstruction: Topic 890 of the Traffic-accident investigation manual. Evanston, Ill: Northwestern University Traffic Institute, 1987.

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34

Horowitz, Alan J. Statewide travel forecasting models. Washington, D.C: Transportation Research Board, 2006.

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35

Jaume, Barceló, and Kuwahara Masao, eds. Traffic data collection and its standardization. New York: Springer, 2010.

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36

Equations and formulas for the traffic accident investigator and reconstructionist. 2nd ed. Tucson, AZ: Lawyers & Judges Pub. Co., 2006.

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37

Buslaev, A. P., and V. M. Prikhodʹko. Veroi︠a︡tnostnye i imitat︠s︡ionnye podkhody k optimizat︠s︡ii avtodorozhnogo dvizhenii︠a︡. Moskva: Mir, 2003.

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38

Pande, Anurag. Proactive assessment of accident risk to improve safety on a system of freeways. San José, CA: Mineta Transportation Institute, College of Business, San José State University, 2012.

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39

Engineers, Society of Automotive, ed. Motor vehicle accident reconstruction: Review and update. Warrendale, PA: Society of Automotive Engineers, 1989.

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40

Arnott, Richard. An integrated model of downtown parking and traffic congestion. Cambridge, MA: National Bureau of Economic Research, 2005.

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41

Komaristyĭ, E. N. Informat︠s︡ionno-modelʹnyĭ kompleks dli︠a︡ issledovanii︠a︡ rynka grazhdanskikh aviaperevozok. Novosibirsk: In-t ėkonomiki i organizat︠s︡ii promyshlennogo proizvodstva, 2006.

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42

Buttazzo, Giuseppe. Optimal urban networks via mass transportation. Berlin: Springer, 2008.

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43

Mandjes, Michel. Large deviations for Gaussian queues: Modelling communication networks. Chichester, UK: John Wiley & Sons, Ltd, 2008.

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44

E, Allsop Richard, Heydecker Benjamin, and Knovel (Firm), eds. Mathematics in transport: Selected proceedings of the 4th IMA International Conference on Mathematics in Transport : in honour of Richard Allsop. Amsterdam: Elsevier, 2007.

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45

Horton, J. P. Relationship of private entrances to highway efficiency. Downsview, Ont: Research and Development Branch, Ontario Ministry of Transportation, 1988.

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46

Niebert, Norbert. Struktur und Algorithmen eines Formelauswertesystems für die Datenverkehrstheorie. Aachen: Verlag der Augustinus-Buchh., 1991.

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47

James, Fox. Review of RAND Europe's transport demand model systems. Santa Monica, CA: RAND, 2003.

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48

Marcinkowski, Jerzy. Rozkłady prawdopodobieństwa przydatne w rozwiązywaniu problemów transportu. Wrocław: Oficyna Wydawnicza Politechniki Wrocławskiej, 1997.

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49

Miller, Eric J. Passenger travel demand analysis: A review of the state-or-the art. [Toronto, Ont.]: University of Toronto-York University Joint Program in Transportation, 1985.

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50

Parker, D. J. Large truck braking at signalized intersections. Downsview, Ont: Research and Development Branch, Ministry of Transportation of Ontario, 1988.

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