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Page 92
Suggested Citation:"REFERENCES." National Academies of Sciences, Engineering, and Medicine. 2022. Alternative Technologies for Mitigating the Risk of Injuries and Deaths in Work Zones: Conduct of Research. Washington, DC: The National Academies Press. doi: 10.17226/26626.
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Suggested Citation:"REFERENCES." National Academies of Sciences, Engineering, and Medicine. 2022. Alternative Technologies for Mitigating the Risk of Injuries and Deaths in Work Zones: Conduct of Research. Washington, DC: The National Academies Press. doi: 10.17226/26626.
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Suggested Citation:"REFERENCES." National Academies of Sciences, Engineering, and Medicine. 2022. Alternative Technologies for Mitigating the Risk of Injuries and Deaths in Work Zones: Conduct of Research. Washington, DC: The National Academies Press. doi: 10.17226/26626.
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Suggested Citation:"REFERENCES." National Academies of Sciences, Engineering, and Medicine. 2022. Alternative Technologies for Mitigating the Risk of Injuries and Deaths in Work Zones: Conduct of Research. Washington, DC: The National Academies Press. doi: 10.17226/26626.
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Suggested Citation:"REFERENCES." National Academies of Sciences, Engineering, and Medicine. 2022. Alternative Technologies for Mitigating the Risk of Injuries and Deaths in Work Zones: Conduct of Research. Washington, DC: The National Academies Press. doi: 10.17226/26626.
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Suggested Citation:"REFERENCES." National Academies of Sciences, Engineering, and Medicine. 2022. Alternative Technologies for Mitigating the Risk of Injuries and Deaths in Work Zones: Conduct of Research. Washington, DC: The National Academies Press. doi: 10.17226/26626.
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Suggested Citation:"REFERENCES." National Academies of Sciences, Engineering, and Medicine. 2022. Alternative Technologies for Mitigating the Risk of Injuries and Deaths in Work Zones: Conduct of Research. Washington, DC: The National Academies Press. doi: 10.17226/26626.
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Suggested Citation:"REFERENCES." National Academies of Sciences, Engineering, and Medicine. 2022. Alternative Technologies for Mitigating the Risk of Injuries and Deaths in Work Zones: Conduct of Research. Washington, DC: The National Academies Press. doi: 10.17226/26626.
×
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Suggested Citation:"REFERENCES." National Academies of Sciences, Engineering, and Medicine. 2022. Alternative Technologies for Mitigating the Risk of Injuries and Deaths in Work Zones: Conduct of Research. Washington, DC: The National Academies Press. doi: 10.17226/26626.
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92 REFERENCES Aarts, L. and Schagen, I.V. (2006). “Driving Speed and the Risk of Road Crashes: A Review.” Accident Analysis & Prevention, Elsevier, 38(2), 215-224. AASHTO (2010). Highway Safety Manual. American Association of State Highway and Transportation Officials (AASHTO), Washington, DC. Abdelmegid, M.A., González, V.A., Poshdar, M., O’Sullivan, M., Walker, C.G., and Ying, F. (2020). “Barriers to adopting simulation modeling in construction industry. Automation in Construction, Elsevier, 111, 103046. Ahmed, S. (2018). “A review on using opportunities of augmented reality and virtual reality in construction project management.” Organization, Technology & Management in Construction: An International Journal, 10(1), 1839-1852. Allread, B.S., Fullerton, C.E., and Teizer, J. (2009). “Pro-Active-Real-Time Personnel Warning System.” Proceedings of the Construction Research Congress 2009, ASCE, pp. 31-40. Andrew, L. B., and J. E. Bryden (2013). A Work Zone Intrusion Initiative to Reduce Highway Construction Accidents. Presented at the 92nd Annual Meeting of the Transportation Research Board, Washington, D.C. Asphalt Contractor (2016). “Oldcastle Materials Creates AWARE to Save Lives. For Construction Pros.” https://www.forconstructionpros.com/asphalt/article/12181842/oldcastle- materials-creates-aware-to-save-lives. Astro Optics (n.d.). “Warehouse Audible-Flashing Worker Alert System.” AO Industrial Supply, https://www.aoindustrialsupply.com/product/worker-alert-system/. ATSSA (2013). Nighttime Lighting Guidelines for Work Zones. ATSSA, https://www.workzonesafety.org/files/documents/training/fhwa_wz_grant/night_lighting_guide. pdf, April 2013. ATSSA (2020a). “Guidance on the Use of Automated Flagger Assistance Devices.” The National Work Zone Safety Information Clearinghouse, https://www.workzonesafety.org/training-resources/fhwa_wz_grant/atssa_afad/, Oct. 21, 2020. ATSSA (2020b). “Guidance for the Use of Portable Changeable Message Signs in Work Zones.” The National Work Zone Safety Information Clearinghouse, https://www.workzonesafety.org/training-resources/fhwa_wz_grant/atssa_pcms_wz/., Jan. 15, 2020.

93 Awolusi, I. and Marks, E.D. (2019). “Active Work Zone Safety: Preventing Accidents using Intrusion Sensing Technologies.” Frontiers in Built Environment, Frontiers, 5(21). Awolusi, I., Marks, E., and Hallowell, M. (2018). “Wearable technology for personalized construction safety monitoring and trending: Review of applicable devices.” Automation in Construction, Elsevier, 85, pp. 96–106, Jan. 2018, https://doi.org/10.1016/j.autcon.2017.10.010. Bai, Y., Yarong, Y., and Li, Y. (2015). “Determining the effective location of a portable changeable message sign on reducing the risk of truck-related crashes in work zones.” Accident Analysis and Prevention, Elsevier, 83 (2015): 197-202. Baker, J. (2012). “The Technology–Organization–Environment Framework. Information Systems Theory, SpringerLink, 231-245. Barlow, Z., Mohammed, H.A., and Hurwitz, D.S. (2020). “Development and Evaluation of Temporary Traffic Control Devices for Unmanned Aerial System Operations.” Journal of Surveying Engineering, ASCE, 146(2), 04020004. Berthaume, A., Berg, I., Kiriazes, R., O’Donnell, B., Zitzow-Childs, S., and Nwana, T. (2020). Upgrading the FHWA Work Zone Model Version 2.0 and Validating Its Performance along I-91 in Springfield, Massachusetts. Transportation Research Record: Journal of the Transportation Research Board 2674, No. 8. Blackman, R., Legge, M., and Debnath, A.K. (2020). “Comparison of Three Traffic Management Plans Showing Shadow and Police Vehicle Effects on Driver Behavior at Highway Single Lane Closures.” Transportation Research Record: Journal of the Transportation Research Board 2674, No. 9. Blincoe, L.J., Miller, T.R., Zaloshnja, E., and Lawrence, B.A. (2015). The Economic and Societal Impact of Motor Vehicle Crashes, 2010 (Revised May 2015). National Highway Traffic Safety Administration (NHTSA), Report No. DOT HS 812 013. Bureau of Labor Statistics (2014). Geographic Information, U.S. Bureau of Labor Statistics, https://www.bls.gov/regions/. Brown, H., Sun, C., and Cope, T. (2015). “Evaluation of mobile work zone alarm systems.” Transportation Research Record: Journal of the Transportation Research Board 2485, No. 1, pp. 42–50. Bujanovic, P., Peterson, T., and Bakar, D. (2021). “CARMASM: Improving Traffic Flows and Safety at Active Work Zones.” Public Roads, FHWA, U.S. Department of Transportation, Publication No. FHWA-HRT-21-003, Vol. 85, No. 1, Spring 2021. Burkett, G., Her, V., and Velinsky, S.A. (2009). “Development of new kinds of mobile safety barriers.” Report No. CA09-0920, Advanced Highway Maintenance and Construction Technology Research Center, Univ. of California at Davis and Caltrans, Feb. 28, 2009.

94 Bushe, B., Feraco, T., Forbes, E., Stilwell, I., and Vanscoy, J. (2020). “A Study of a Traffic Controlling Robot for Safer Work Zones.” Worcester Polytechnic Institute, E-project-051820- 154713. Caltrans (2006). FHWA's Interim Approvals Status in California, Caltrans, https://dot.ca.gov/programs/safety-programs/camutcd/interim, March 9, 2006. Cameron, G. (2020). “SmartCone technology an adaptable jobsite safety tool.” Daily Commercial News, ConstructConnect, Jan. 31, 2020, https://canada.constructconnect.com/dcn/news/ohs/2020/01/smartcone-technology-an-adaptable- jobsite-safety-tool. Chen, K. and Xue, F. (2020). The renaissance of augmented reality in construction: history, present status and future directions. Smart and Sustainable Built Environment. Chevron (n.d.). “Case Studies.” Chevron Traffic Management, https://www.chevrontm.com/about/case-studies. Choi, B., Hwang, S., and Lee, S. (2017). “What drives construction workers’ acceptance of wearable technologies in the workplace?: Indoor localization and wearable health devices for occupational safety and health.” Automation in Construction, Elsevier, 84, pp. 31–41, Dec. 2017, https://doi.org/10.1016/j.autcon.2017.08.005. Crawford, D. (2014). “Wireless Sensors in Traffic Cones to Protect Workers.” Engineering and Technology Magazine, The Institution of Engineering and Technology (IET), June 18, 2014. Darko, A., Chan, A.P.C., Yang, Y., Shan, M., He, B.J., and Gou, Z. (2018). “Influences of Barriers, Drivers, and Promotion Strategies on Green Building Technologies Adoption in Developing Countries: The Ghanaian Case.” Journal of Cleaner Production, Elsevier, 200, 687- 703. Debnath, A., Blackman, R., and Haworth, N. (2012). “A review of the effectiveness of speed control measures in roadwork zones.” In Proceedings of the 2012 Occupational Safety in Transport (OSIT) Conference, CARRS-Q, Queensland University of Technology, pp. 1-10. Edara, P., Sun, C., Keller, C., and Hou, Y. (2011). “Evaluating the benefits of dynamic message signs on Missouri's rural corridors.” Report No. cmr 13-004, Missouri Department of Transportation. Edirisinghe, R., Dias, D., Lingard, H., Wakefield, R., and Blismas, N. “Device-Free Detection to Improve Construction Work Health and Safety.” Computing in Civil and Building Engineering, pp. 1078-1085. Ermagun, A., Kelarestaghi, K.B., Finney, M., and Heaslip, K. (2020). “Speed Up to Hit the Worker: Impact of Hacked Road Signs on Work Zone Safety.” International Journal of Transportation Science and Technology, 2020-06.

95 Eseonu, C., Gambatese, J., and Nnaji, C. (2018). “Reducing Highway Construction Fatalities through Improved Adoption of Safety Technologies.” Final Report, The Center for Construction Research and Training (CPWR), Silver Spring, MD. EZ Office Inventory (2019). “RFID Tracking System Technology.” EZ Office Inventory, https://blog.ezofficeinventory.com/rfid-tracking-system/, Feb. 19, 2019. FHWA (2009). Manual on Uniform Traffic Control Devices for Streets and Highways. U.S., Department of Transportation (USDOT), FHWA. FHWA (2016). “National Work Zone Awareness Week: Don’t be that Driver.” U.S. Department of Transportation, FHWA. FHWA (2017). “Technology Readiness Level Guidebook.” U.S. Department of Transportation, FHWA, Report No. FHWA-HRT-17-047, Sept. 2017. Gambatese, J.A. and Tymvios, N. (2013). “Evaluation of a Mobile Work Zone Barrier System,” Final Report, SPR 746. ODOT and U.S. Department of Transportation, FHWA, Aug. 2013, http://www.oregon.gov/ODOT/Programs/ResearchDocuments/SPR746_MobileBarriers.pdf. Gambatese, J.A., Lee, H.W., and Nnaji, C.A. (2017). “Work Zone Intrusion Alert Technologies: Assessment and Practical Guidance.” Final Report No. FHWA-OR-RD-17-14, ODOT Research Section. Grose, T. (2015). “Smart Safety Vests.” ASEE Prism, 25(2), 13. Hallowell, M.R., Protzman, J.B., and Molenaar, K.R. (2010). “Mobile barrier trailer: Analysis of an emerging work zone protection system.” Professional Safety, ASSP, 55 (10), 31-38. Han, W. (2019). A Connected Work Zone Hazard Detection System for Highway Construction Work Zones. Doctoral dissertation, Virginia Tech University. Hubbard, B. and Hubbard, S. (2020). “Opportunities for Transportation Departments to Leverage Construction UAS Data.” Creative Construction e-Conference 2020. Budapest University of Technology and Economics, 2020. iCone Products (2020). What You Need to Know About Connected Work Zones. iCone Products, https://www.iconeproducts.com/news/what-you-need-to-know-about-connected-work-zones, Sept. 18, 2020. Illumagear (n.d.). HALO SL Specifications, Illumagear, Inc., https://illumagear.com/wp- content/uploads/2020/05/Specifications-Sheet.pdf. Jafarnejad, A., Gambatese, J.A., and Hernandez, S. (2018). Impact of Temporary Portable Work Zone and Personal Lighting on Vehicle Speeds in Nighttime Highway Preservation Projects. Presented at 97th Annual Meeting of the Transportation Research Board, Washington, D.C.

96 Kamga, C. and Washington, D.W. (2009). “Portable Work Zone Barrier - "Mobile Barriers": Mobile Barrier Trailer (MBT-1®).” Report No. FHWA-NJ-2009-021, New Jersey Department of Transportation (NJDOT). Kim, K., Kim, H., and Kim, H. (2017). “Image-based construction hazard avoidance system using augmented reality in wearable device.” Automation in Construction, Elsevier, 83, 390-403. Khan, G., Sanni, S., Berr, S., and Shafizadeh, K. (2019). “Evaluation of Work Zone Intrusion Alarms.” Report No. CA19-3038, Caltrans. Kohls, A.G. (2020). Autonomous Truck Mounted Attenuator (ATMA) Pilot (No. RES 2019-15). Tennessee Department of Transportation. Kratos (n.d.). Autonomous Truck Mounted Attenuator (ATMA). Kratos Defense, https://www.kratosdefense.com/systems-and-platforms/unmanned-systems/ground/autonomous- truck-mounted-attenuator. Kratos Defense and Royal Truck and Equipment. (n.d.). Autonomous Maintenance Technology. Kratos Defense, as cited in http://www.csits.colostate.edu/autonomous-maintenance- technology.html. Liao, C.F. (2019). “Test and Evaluate a Bluetooth Based In-Vehicle Message System to Alert Motorists in Work Zones.” Center for Transportation Studies, University of Minnesota, May 2019. Louis, J., Gambatese, J., and Chan, K. (2018). “Improving Safety on Highway Work Zones by Real-time Tracking of Operation and Equipment Status.” Final Report, Pacific Northwest Transportation Consortium (PacTrans). Mallela, J., Gilson, K., and Goodrum, P.M. (2020). “Leveraging Augmented Reality for Highway Construction.” Report No. FHWA-HRT-20-038, U.S. Department of Transportation, FHWA. Malveaux, C., De Queiroz, M., Li, X., Hassan, H., and He, Z. (2020). “Real-Time Work Zone Traffic Management via Unmanned Air Vehicles.” Louisiana State University and A&M College, Transportation Consortium of South-Central States (Tran-SET), Retrieved from https://digitalcommons.lsu.edu/transet_pubs/70. Manufacturers, A. of E. (2021). Autonomous Equipment: Examining the Path Toward a Driverless Tomorrow. AEM, https://www.aem.org/news/autonomous-equipment-examining-the- path-toward-a-driverless-tomorrow, March 15, 2021. Marks, E. (2017). “Highway Work Zone Intrusion Alert Systems Implementation Guide.” Alabama Department of Transportation (ALDOT), July 1, 2017, https://rosap.ntl.bts.gov/view/dot/32770.

97 Marks, E., Vereen, S.C., and Awolusi, I. (2017). “Active Work Zone Safety Using Emerging Technologies 2017.” UTCA Report Number 15412, University Transportation Center for Alabama, July 2017. Mishra, S., Golias, M.M., and Thapa, D. (2021). “Work Zone Alert Systems.” Report No. RES2019-01, Tennessee Department of Transportation. Mobile Barriers (n.d.). https://www.mobilebarriers.com/features-tapered-wall-and-mbt1s.html, Mobile Barriers, accessed July 5, 2021. Mollenhauer, M.A., White, E., and Roofigari-Esfahan, N. (2019). “Design and Evaluation of a Connected Work Zone Hazard Detection and Communication System for Connected and Automated Vehicles (CAVs).” Virginia Tech Transportation Institute (VTTI), 03-050 Final Research Report. NCDOT (2009). “Automated Flagging Assistance Devices (AFAD).” North Carolina Department of Transportation (NCDOT), TIP: R-0505, Project Special Provision, revised 2009, https://xfer.services.ncdot.gov/DSPlan/2009%20Highway%20Letting/05-19- 09/Plans%20and%20Proposals/Henderson%20R-0505%20C202087/Proposal/C- Traffic%20Control.pdf. Nikakhtar, A., Wong, K.Y., Zarei, M.H., and Memari, A. (2011). “Comparison of two simulation software for modeling a construction process.” In Proceedings of the Third International Conference on Computational Intelligence, Modeling & Simulation, IEEE, pp. 200-205, Sept. 2011. Nnaji, C., Lee, H.W., Karakhan, A., and Gambatese, J. (2018). “Developing a Decision-making Framework to Select Safety Technologies for Highway Construction.” Journal of Construction Engineering and Management, ASCE, 144(4), 04018016. Nnaji, C., Gambatese, J., Karakhan, A., and Eseonu, C. (2019). “Influential Safety Technology Adoption Predictors in Construction.” Engineering, Construction and Architectural Management, Emerald Insight, http://doi.org/10.1108/ECAM-09-2018-0381. Nnaji, C., Jafarnejad, A., and Gambatese, J. (2020). “Effects of Wearable light Systems on Safety of Highway Construction Workers.” Practice Periodical on Structural Design and Construction, ASCE, 25(2), https://doi.org/10.1061/(ASCE)SC.1943-5576.0000469. Nnaji, C. and Karakhan, A.A. (2020). “Technologies for Safety and Health Management in Construction: Current Use, Implementation Benefits and Limitations, and Adoption Barriers.” Journal of Building Engineering, Elsevier, 29, 101212. Nnaji, C., Gambatese, J., Lee, H. W., and Zhang, F. (2020). “Improving Construction Work Zone Safety using Technology: A Systematic Review of Applicable Technologies. Journal of Traffic and Transportation Engineering (English edition), ScienceDirect, 7(1), 61-75.

98 Novosel, C. (2014). “Evaluation of Advanced Safety Perimeter Systems for Kansas Temporary Work Zones.” PhD dissertation, University of Kansas, https://kuscholarworks.ku.edu/bitstream/handle/1808/18377/Novosel_ku_0099M_13762_DATA _1.pdf. Okpala, I., Nnaji, C., Awolusi, I., and Akanmu, A. (2021). Developing a Success Model for Assessing the Impact of Wearable Sensing Devices in the Construction Industry. Journal of Construction Engineering and Management, ASCE, 147(7), 04021060. Park, J., Marks, E., Cho, Y.K., and Suryanto, W. (2016). “Performance test of wireless technologies for personnel and equipment proximity sensing in work zones.” Journal of Construction Engineering and Management, ASCE, 142(1), 04015049. Pennsylvania DOT (2021). “Pennsylvania Automated Work Zone Speed Enforcement.” Pennsylvania DOT, https://workzonecameras.penndot.gov/, April 1, 2021. Pirzada, N., Nayan, M.Y., Hassan, F.S.M.F., and Khan, M.A. (2014). “Device-free localization technique for indoor detection and tracking of human body: A survey.” Procedia-Social and Behavioral Sciences, 129, 422-429. Purdue ECT Team (2015). The Halo Light™. ECT Fact Sheets, Purdue e-Pubs, https://docs.lib.purdue.edu/ectfs/219/, Nov. 20, 2015. Qiao, F., Jia, J., Yu, L., Li, Q., and Zhai, D. (2014). “Drivers’ Smart Assistance System Based on Radio Frequency Identification.” Transportation Research Record, 2458.1 (2014): 37-46. Raddaoui, O., Ahmed, M.M., and Gaweesh, S.M. (2020). “Assessment of the Effectiveness of Connected Vehicle Weather and Work Zone Warnings in Improving Truck Driver Safety.” IATSS Research. Rahman, M., Strawderman, L., Garrison, T., Eakin, D., and Williams, C.C. (2017). “Work Zone Sign Design for Increased Driver Compliance and Worker Safety.” Accident Analysis and Prevention, Elsevier, 106 (2017): 67-75. Sanni, S. (2019). “Evaluation of work zone intrusion alarm systems.” Master’s thesis, California State University, Sacramento. Sant, B. (2014). “Work-Zone Safety: Intrusion Alert.” Roads & Bridges, June 15, 2014, https://www.roadsbridges.com/work-zone-safety-intrusion-alert. Shaw, J.W., Chitturi, M.V., Bremer, W., and Noyce, D.A. (2015). Work Zone Speed Management, National Academies of Sciences, Engineering, and Medicine, https://doi.org/10.17226/21901. Singh, P. and Islam, M.A. (2020). “Movement of autonomous vehicles in work zone using new pavement marking: a new approach.” Journal of Transportation Technologies, 10(3), 183-197.

99 SmartCone (n.d.). The SmartCone™ Eco-System. SmartCone, https://www.thesmartcone.com/solutions. SonoBlaster® Work Zone Intrusion Alarm and Accessories (n.d.). TAPCO, https://www.tapconet.com/product/sonoblaster-work-zone-intrusion-alarm-and-accessories. Thapa, D. and Mishra, S. (2021). “Using worker's naturalistic response to determine and analyze work zone crashes in the presence of work zone intrusion alert systems.” Accident Analysis & Prevention, Elsevier, 156, 106125. Theiss, L., Ullman, G.L., and Lindheimer, T. (2017). “Closed Course Performance Testing of the AWARE Intrusion Alarm System.” Texas A&M Transportation Institute, April 12, 2017. Traffic Worker Alert System (n.d.). Traffic Warehouse Safety, https://www.trafficsafetywarehouse.com/Traffic-Worker-Alert-System/productinfo/TG-WAS- RC-CS/. Trans Canada Traffic Inc. (n.d.). Intellicone. Intellicone | Product Guide. https://www.transcanadatraffic.ca/IntelliconeProductInformation.html#.YN0mobuSmUl. Transportation Professional (2016). “Technology spurs work sites to become safer: Connected technology installed on site and in works vehicles has the promise of reducing harm for personnel maintaining the highway.” Transportation Professional, Chartered Institute of Highways & Transportation (CIHT), pp. 18-19, Feb. 2016. Trout, N.D., Finley, M.D., and Ullman, G.L. (2013). “Motorists' understanding of automated flagger assistance devices in work zones.” Transportation Research Record, 2337(1), 42-49. Ullman, G.L., Finley, M.D., and Theiss, L. (2010). Work Zone Intrusion Countermeasure Identification, Assessment, and Implementation Guidelines. No. FHWA/CA10-1102. Ulteig Engineers, Inc. (2020). “Colorado Department of Transportation: Smart work zone guidelines.” UMass Transportation Center (2019). 2019 Commercial Vehicle Safety Summit: Best Practices for Industry & Law Enforcement Partnerships to Prevent Crashes. UMass Safe - Traffic Safety Research Program, https://www.umasstransportationcenter.org/umtc/2019-Commercial-Vehicle- Safety-Summit-Presentation.asp, Nov. 1, 2019. Waldman, B. (2020a). “I-25 South Gap Work Zone Performance Measures Report.” CDOT, Report CDOT-2020-16. Waldman, B. (2020b). “I-25 Gap Queue Warning System Evaluation.” CDOT. Wang, M.H., Schrock, S.D., Bai, Y., and Rescot, R.A. (2013). “Evaluation of innovative traffic safety devices at short-term work zones.” Kansas Department of Transportation, Kansas State

100 University Transportation Center, and University of Kansas, Report No. K-TRAN: KU-09-5, Final Report, Dec. 2011. Wang, M.H., Schrock, S.D., Bornheimer, C., and Rescot, R. (2013). “Effects of Innovative Portable Plastic Rumble Strips at Flagger-Controlled Temporary Maintenance Work Zones." Journal of Transportation Engineering, ASCE, 139 (2), 156-64. Welles, H. (2020). The Future of Autonomous Construction Equipment. ConstructConnect, Construction Project Management Software, https://www.constructconnect.com/blog/the-future- of-autonomous-construction-equipment., March 19, 2020. Worker Alert System (n.d.). TAPCO, https://www.tapconet.com/product/worker-alert-system.

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Work zone intrusion technologies are available that provide an opportunity to prevent and mitigate vehicle intrusions into roadway work zones.

The TRB National Cooperative Highway Research Program's NCHRP Web-Only Document 322: Alternative Technologies for Mitigating the Risk of Injuries and Deaths in Work Zones: Conduct of Research provides a comprehensive synthesis and evaluation of technologies that prevent and/or mitigate intrusions into work zones.

The document is supplemental to NCHRP Research Report 1003: Guide to Alternative Technologiesfor Preventing and Mitigating Vehicle Intrusions into Highway Work Zones.

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