This document presents a summary of a lifecycle cost analysis (LCCA) study that was performed by a signature bridge owner evaluating different overlay options for one of their bridges. The analysis compared ultra-high performance concrete (UHPC) overlays with several thicknesses with conventional concrete overlay solutions and complete deck replace
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Haber, Z. B., McDonagh, M., Foden, A., & Sadasivam, S. (2022). Ultra-High Performance Concrete (UHPC) Overlays: An Example of Lifecycle Cost Analysis [tech note] (Report No. FHWA-HRT-23-012). United States. Federal Highway Administration. Office of Research, Development, and Technology. https://rosap.ntl.bts.gov/view/dot/64952
Haber, Zachary B., Michael McDonagh, Andrew Foden, and Suri Sadasivam. Ultra-High Performance Concrete (UHPC) Overlays: An Example of Lifecycle Cost Analysis [tech note]. Report no. FHWA-HRT-23-012. United States. Federal Highway Administration. Office of Research, Development, and Technology, 2022. https://rosap.ntl.bts.gov/view/dot/64952.
Haber, Zachary B., et al. Ultra-High Performance Concrete (UHPC) Overlays: An Example of Lifecycle Cost Analysis [tech note]. United States. Federal Highway Administration. Office of Research, Development, and Technology, 2022, Report no. FHWA-HRT-23-012, ROSA P. https://rosap.ntl.bts.gov/view/dot/64952.
This document is a technical summary of the Federal Highway Administration report Driver Yielding with LED-Embedded Pedestrian- and School-Crossing Signs.
Fitzpatrick, K., Park, E. S., & Johnson, N. (2022). Driver Yielding with LED-Embedded Pedestrian and School Crossing Signs [tech brief] (Report No. FHWA-HRT-23-013). United States. Federal Highway Administration. Office of Research, Development, and Technology. https://rosap.ntl.bts.gov/view/dot/64875
Fitzpatrick, Kay, Eun Sug Park, and Neal Johnson. Driver Yielding with LED-Embedded Pedestrian and School Crossing Signs [tech brief]. Report no. FHWA-HRT-23-013. United States. Federal Highway Administration. Office of Research, Development, and Technology, 2022. https://rosap.ntl.bts.gov/view/dot/64875.
Fitzpatrick, Kay, et al. Driver Yielding with LED-Embedded Pedestrian and School Crossing Signs [tech brief]. United States. Federal Highway Administration. Office of Research, Development, and Technology, 2022, Report no. FHWA-HRT-23-013, ROSA P. https://rosap.ntl.bts.gov/view/dot/64875.
United States. Department of Transportation. Federal Highway Administration. Office of Highway Policy Information
2022-11-01
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Traffic Volume Trends is a monthly report based on hourly traffic count data reported by the States. These data are collected at approximately 5,000 continuous traffic counting locations nationwide and are used to estimate the percent change in traffic for the current month compared with the same month in the previous year. Estimates are re-adjuste
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United States. Department of Transportation. Federal Highway Administration. Office of Highway Policy Information (2022). Traffic Volume Trends: November 2022. United States. Department of Transportation. Federal Highway Administration. Office of Highway Policy Information. https://rosap.ntl.bts.gov/view/dot/66163
United States. Department of Transportation. Federal Highway Administration. Office of Highway Policy Information. Traffic Volume Trends: November 2022. United States. Department of Transportation. Federal Highway Administration. Office of Highway Policy Information, 2022. https://rosap.ntl.bts.gov/view/dot/66163.
United States. Department of Transportation. Federal Highway Administration. Office of Highway Policy Information Traffic Volume Trends: November 2022. United States. Department of Transportation. Federal Highway Administration. Office of Highway Policy Information, 2022, ROSA P. https://rosap.ntl.bts.gov/view/dot/66163.
United States. Department of Transportation. Federal Highway Administration. Office of Infrastructure Research and Development
2022-11-01
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Modern Nondestructive Evaluation (NDE) technologies offer an expanding suite of geophysical techniques to detect and locate buried utilities. This project focused on identifying promising technologies that merit expanded application and mainstream deployment by State departments of transportation (DOTs). Since the Second Strategic Highway Research
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United States. Department of Transportation. Federal Highway Administration. Office of Infrastructure Research and Development (2022). Availability, Feasibility, and Reliability of Available Nondestructive Evaluation Technologies for Detecting and Locating Buried Utilities (Report No. FHWA-HRT-22-111). United States. Federal Highway Administration. Office of Research, Development, and Technology. https://rosap.ntl.bts.gov/view/dot/66037
United States. Department of Transportation. Federal Highway Administration. Office of Infrastructure Research and Development. Availability, Feasibility, and Reliability of Available Nondestructive Evaluation Technologies for Detecting and Locating Buried Utilities. Report no. FHWA-HRT-22-111. United States. Federal Highway Administration. Office of Research, Development, and Technology, 2022. https://rosap.ntl.bts.gov/view/dot/66037.
United States. Department of Transportation. Federal Highway Administration. Office of Infrastructure Research and Development Availability, Feasibility, and Reliability of Available Nondestructive Evaluation Technologies for Detecting and Locating Buried Utilities. United States. Federal Highway Administration. Office of Research, Development, and Technology, 2022, Report no. FHWA-HRT-22-111, ROSA P. https://rosap.ntl.bts.gov/view/dot/66037.
This report documents the Comprehensive Deployment Plan of the Truck Platooning Early Deployment Assessment Phase 2 project. It includes important aspects of the Field Operational Test (FOT): (a) technical approach for Cooperative Adaptive Cruise Control (CACC) including system functionality and some initial relevant functional safety consideration
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Lu, X. Y., Shladover, S., Liu, H., Wang, P., Huey, R., & McKeever, B. B. (2022). Truck Platooning Early Deployment Assessment: Phase 2 Comprehensive Deployment Plan (Report No. FHWA-JPO-22-986). United States. Department of Transportation. Intelligent Transportation Systems Joint Program Office. https://rosap.ntl.bts.gov/view/dot/66285
Lu, Xiao-Yun, Steven Shladover, Hao Liu, Peggy Wang, Rick Huey, and Benjamin B. McKeever. Truck Platooning Early Deployment Assessment: Phase 2 Comprehensive Deployment Plan. Report no. FHWA-JPO-22-986. United States. Department of Transportation. Intelligent Transportation Systems Joint Program Office, 2022. https://rosap.ntl.bts.gov/view/dot/66285.
Lu, Xiao-Yun, et al. Truck Platooning Early Deployment Assessment: Phase 2 Comprehensive Deployment Plan. United States. Department of Transportation. Intelligent Transportation Systems Joint Program Office, 2022, Report no. FHWA-JPO-22-986, ROSA P. https://rosap.ntl.bts.gov/view/dot/66285.
The Federal Highway Administration initiated the Cooperative Driving Automation (CDA) Program, formerly known as the CARMA Program, to advance the research and development of CDA to accelerate market readiness and deployment. CDA aims to improve the safety, traffic throughput, and energy efficiency of the transportation network by allowing road use
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Lou, Y., Hale, D., McConnel, M., Ghiasi, A., Jannat, M., & Racha, S. (2022). FHWA Cooperative Automation Research: CARMA Proof-of-Concept TSMO Use Case Testing: CARMA Cooperative Perception Low-Level Concept of Operations (Report No. FHWA-HRT-22-116). United States. Federal Highway Administration. https://doi.org/10.21949/1521946
Lou, Yingyan, David Hale, Michael McConnel, Amir Ghiasi, Mafruhatul Jannat, and Sujith Racha. FHWA Cooperative Automation Research: CARMA Proof-of-Concept TSMO Use Case Testing: CARMA Cooperative Perception Low-Level Concept of Operations. Report no. FHWA-HRT-22-116. United States. Federal Highway Administration, 2022. https://doi.org/10.21949/1521946.
Lou, Yingyan, et al. FHWA Cooperative Automation Research: CARMA Proof-of-Concept TSMO Use Case Testing: CARMA Cooperative Perception Low-Level Concept of Operations. United States. Federal Highway Administration, 2022, Report no. FHWA-HRT-22-116, ROSA P. https://doi.org/10.21949/1521946.
This report is the final deliverable of the "Future of E-Bikes in Public Lands" research project. The research was funded through the Federal Highway Administration (FHWA) Federal Lands Highway Innovation Research Council. This report represents the first national-scale effort to develop a comprehensive framework to study the opportunities and chal
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Chiarenza, J., Rasmussen, B., Sydoriak, J., & Korn, J. (2022). The Future of E-Bikes on Public Lands: How to Effectively Manage a Growing Trend (Report No. FHWA-FLH-23-001). United States. Department of Transportation. Federal Highway Administration. https://rosap.ntl.bts.gov/view/dot/71903
Chiarenza, Jonah, Ben Rasmussen, Jason Sydoriak, and Jacob Korn. The Future of E-Bikes on Public Lands: How to Effectively Manage a Growing Trend. Report no. FHWA-FLH-23-001. United States. Department of Transportation. Federal Highway Administration, 2022. https://rosap.ntl.bts.gov/view/dot/71903.
Chiarenza, Jonah, et al. The Future of E-Bikes on Public Lands: How to Effectively Manage a Growing Trend. United States. Department of Transportation. Federal Highway Administration, 2022, Report no. FHWA-FLH-23-001, ROSA P. https://rosap.ntl.bts.gov/view/dot/71903.
This document presents the concept of operations for roadway automated driving systems (ADS) integration targeted at transportation agencies in the United States. Developed by the Federal Highway Administration, the purpose of this document is to define likely ADS uses and how they can safely, equitably, and efficiently be integrated with the overa
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Gopalakrishna, D., Ostroff, R., Whitlock, S., Deeter, D., Schroeder, J. L., Stephens, D., Matkowski, L., Long, C., Karanth, A., Rice, R., Kuhn, B., & Brydia, B. (2022). Roadway Automated Driving Systems Integration Concept of Operations for Transportation Agencies: Version 1 (Report No. FHWA-HOP-22-052). United States. Department of Transportation. Federal Highway Administration. https://rosap.ntl.bts.gov/view/dot/76565
Gopalakrishna, Deepak, Rachel Ostroff, Sarah Whitlock, Dean Deeter, Jeremy L. Schroeder, Denny Stephens, and Laurie Matkowski, et al.. Roadway Automated Driving Systems Integration Concept of Operations for Transportation Agencies: Version 1. Report no. FHWA-HOP-22-052. United States. Department of Transportation. Federal Highway Administration, 2022. https://rosap.ntl.bts.gov/view/dot/76565.
Gopalakrishna, Deepak, et al. Roadway Automated Driving Systems Integration Concept of Operations for Transportation Agencies: Version 1. United States. Department of Transportation. Federal Highway Administration, 2022, Report no. FHWA-HOP-22-052, ROSA P. https://rosap.ntl.bts.gov/view/dot/76565.
Electric-assist bicycles (e-bikes) are growing in popularity, and their use has increased on public lands managed by federal, state, and local agencies. Evaluation of e-bike use on public lands is hindered by a dearth of scientific research. This paper presents the results of a human factors field study that evaluated participant speed and behavior
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Chiarenza, J., Berg, I., Calabrese, C., Flynn, D., Ledvina, K., Rasmussen, B., Rittmuller, R., Rodriguez, M., & Young, J. (2022). The Future of E-Bikes on Public Lands: How to Effectively Manage a Growing Trend (Report No. FHWA-FLH-23-005). United States. Department of Transportation. Federal Highway Administration. https://rosap.ntl.bts.gov/view/dot/76561
Chiarenza, Jonah, Ian Berg, Clark Calabrese, Daniel Flynn, Kirby Ledvina, Ben Rasmussen, Robert Rittmuller, Michael Rodriguez, and Jared Young. The Future of E-Bikes on Public Lands: How to Effectively Manage a Growing Trend. Report no. FHWA-FLH-23-005. United States. Department of Transportation. Federal Highway Administration, 2022. https://rosap.ntl.bts.gov/view/dot/76561.
Chiarenza, Jonah, et al. The Future of E-Bikes on Public Lands: How to Effectively Manage a Growing Trend. United States. Department of Transportation. Federal Highway Administration, 2022, Report no. FHWA-FLH-23-005, ROSA P. https://rosap.ntl.bts.gov/view/dot/76561.
2022-11-01
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FHWA Highway History Website Articles
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Bibliography of the Interstate Highway System.
Weingroff, R. F. (2022). Highway History Bibliography: Interstate System, Critical. United States. Department of Transportation. Federal Highway Administration. https://rosap.ntl.bts.gov/view/dot/68566
Weingroff, Richard F.. Highway History Bibliography: Interstate System, Critical. United States. Department of Transportation. Federal Highway Administration, 2022. https://rosap.ntl.bts.gov/view/dot/68566.
Weingroff, Richard F. Highway History Bibliography: Interstate System, Critical. United States. Department of Transportation. Federal Highway Administration, 2022, ROSA P. https://rosap.ntl.bts.gov/view/dot/68566.
This technical report accompanies the Freight Analysis Framework Forecasts Version 5 (FAF5.2). The technical report outlines the data and methodology used to develop freight forecasts using the 2017 base-year FAF data for 2020, 2022, 2023, 2025, and long-term forecasts in 5-year increments from 2030 to 2050. FAF5 estimates are updated periodically
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Bingham, P., Maguire, A., O'Rourke, L., & Pandey, B. (2022). Freight Analysis Framework Commodity Flow Forecast Study (FAF Version 5): Final Forecasting Results (Report No. FHWA-HOP-22-037). United States. Department of Transportation. Federal Highway Administration. Office of Operations. https://rosap.ntl.bts.gov/view/dot/66029
Bingham, Paul, Aleksandra Maguire, Larry O'Rourke, and Birat Pandey. Freight Analysis Framework Commodity Flow Forecast Study (FAF Version 5): Final Forecasting Results. Report no. FHWA-HOP-22-037. United States. Department of Transportation. Federal Highway Administration. Office of Operations, 2022. https://rosap.ntl.bts.gov/view/dot/66029.
Bingham, Paul, et al. Freight Analysis Framework Commodity Flow Forecast Study (FAF Version 5): Final Forecasting Results. United States. Department of Transportation. Federal Highway Administration. Office of Operations, 2022, Report no. FHWA-HOP-22-037, ROSA P. https://rosap.ntl.bts.gov/view/dot/66029.
The sixth round of the Every Day Counts (EDC-6) initiative selected electronic ticketing (e-Ticketing) for rapid deployment among highway agencies to enhance work zone safety, improve quality, and realize cost savings through digitalization. Highway construction projects generate massive amounts of valuable data that historically were communicated
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Sadasivam, S. (2022). Virginia Department of Transportation E-Ticketing Peer Exchange [Tech Brief] (Report No. FHWA-HIF-24-057). United States. Department of Transportation. Federal Highway Administration. https://rosap.ntl.bts.gov/view/dot/80620
Sadasivam, Suriyanarayanan. Virginia Department of Transportation E-Ticketing Peer Exchange [Tech Brief]. Report no. FHWA-HIF-24-057. United States. Department of Transportation. Federal Highway Administration, 2022. https://rosap.ntl.bts.gov/view/dot/80620.
Sadasivam, Suriyanarayanan Virginia Department of Transportation E-Ticketing Peer Exchange [Tech Brief]. United States. Department of Transportation. Federal Highway Administration, 2022, Report no. FHWA-HIF-24-057, ROSA P. https://rosap.ntl.bts.gov/view/dot/80620.
United States. Department of Transportation. Federal Highway Administration
2022-11-01
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The In-Situ Scour Testing Device (ISTD) is an advanced system designed by the hydraulics research team at the Turner-Fairbank Highway Research Center (TFHRC) to measure the erosion resistance of fine-grained, cohesive soils directly in the field. It features an innovative erosion head that, when inserted into a standard drill casing, can direct a h
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United States. Department of Transportation. Federal Highway Administration (2022). In-Situ Scour Testing Device (ISTD), State Demonstrations of Field Soil Tests, Franklin, VA (Report No. FHWA-HRT-23-007). United States. Department of Transportation. Federal Highway Administration. https://rosap.ntl.bts.gov/view/dot/65657
United States. Department of Transportation. Federal Highway Administration. In-Situ Scour Testing Device (ISTD), State Demonstrations of Field Soil Tests, Franklin, VA. Report no. FHWA-HRT-23-007. United States. Department of Transportation. Federal Highway Administration, 2022. https://rosap.ntl.bts.gov/view/dot/65657.
United States. Department of Transportation. Federal Highway Administration In-Situ Scour Testing Device (ISTD), State Demonstrations of Field Soil Tests, Franklin, VA. United States. Department of Transportation. Federal Highway Administration, 2022, Report no. FHWA-HRT-23-007, ROSA P. https://rosap.ntl.bts.gov/view/dot/65657.
United States. Department of Transportation. Federal Highway Administration
2022-11-01
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The In-Situ Scour Testing Device (ISTD) is an advanced system designed by the hydraulics research team at the Turner-Fairbank Highway Research Center to measure the erosion resistance of fine-grained, cohesive soils directly in the field. It features an innovative erosion head that, when inserted into a standard drill casing, can direct a horizonta
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United States. Department of Transportation. Federal Highway Administration (2022). In-Situ Scour Testing Device (ISTD), State Demonstrations of Field Soil Tests, Grifton, NC (Report No. FHWA-HRT-23-008). United States. Department of Transportation. Federal Highway Administration. https://rosap.ntl.bts.gov/view/dot/65680
United States. Department of Transportation. Federal Highway Administration. In-Situ Scour Testing Device (ISTD), State Demonstrations of Field Soil Tests, Grifton, NC. Report no. FHWA-HRT-23-008. United States. Department of Transportation. Federal Highway Administration, 2022. https://rosap.ntl.bts.gov/view/dot/65680.
United States. Department of Transportation. Federal Highway Administration In-Situ Scour Testing Device (ISTD), State Demonstrations of Field Soil Tests, Grifton, NC. United States. Department of Transportation. Federal Highway Administration, 2022, Report no. FHWA-HRT-23-008, ROSA P. https://rosap.ntl.bts.gov/view/dot/65680.
This document is intended to act as a nonbinding “road map” of service life design concepts and methods for bridge owners and designers. The focus of the document is on North American design practice and references for application of service life design principles are provided for highway bridges composed of both concrete and steel. The document ma
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Hopper, T., Langlois, A. M., & Murphy, T. (2022). Reference Guide for Service Life Design of Bridges (Report No. FHWA-HIF-22-052). United States. Federal Highway Administration. Office of Bridges and Structures. https://rosap.ntl.bts.gov/view/dot/64959
Hopper, Travis, Anne-Marie Langlois, and Thomas Murphy. Reference Guide for Service Life Design of Bridges. Report no. FHWA-HIF-22-052. United States. Federal Highway Administration. Office of Bridges and Structures, 2022. https://rosap.ntl.bts.gov/view/dot/64959.
Hopper, Travis, et al. Reference Guide for Service Life Design of Bridges. United States. Federal Highway Administration. Office of Bridges and Structures, 2022, Report no. FHWA-HIF-22-052, ROSA P. https://rosap.ntl.bts.gov/view/dot/64959.
United States. Department of Transportation. Federal Highway Administration
2022-11-01
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This fact sheet provides information regarding the Transportation Pooled Fund (TPF) Excellence Award Program. For more than 45 years, the Federal Highway Administration’s (FHWA) TPF Program has enabled public and private entities to collaboratively conduct cutting-edge transportation research. Through the TPF Program, participants are able to pool
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United States. Department of Transportation. Federal Highway Administration (2022). Transportation Pooled Fund Program: Leveraging Resources To Achieve Common Research Goals (Report No. FHWA-HRT-21-031). United States. Department of Transportation. Federal Highway Administration. https://rosap.ntl.bts.gov/view/dot/71860
United States. Department of Transportation. Federal Highway Administration. Transportation Pooled Fund Program: Leveraging Resources To Achieve Common Research Goals. Report no. FHWA-HRT-21-031. United States. Department of Transportation. Federal Highway Administration, 2022. https://rosap.ntl.bts.gov/view/dot/71860.
United States. Department of Transportation. Federal Highway Administration Transportation Pooled Fund Program: Leveraging Resources To Achieve Common Research Goals. United States. Department of Transportation. Federal Highway Administration, 2022, Report no. FHWA-HRT-21-031, ROSA P. https://rosap.ntl.bts.gov/view/dot/71860.
United States. Department of Transportation. Federal Highway Administration. Office of Natural Environment
2022-11-01
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Air Quality + Sustainable Transportation Highlights
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This brief newsletter keeps transportation stakeholders up-to-date on various issues related to transportation and climate change.
United States. Department of Transportation. Federal Highway Administration. Office of Natural Environment (2022). Air Quality + Sustainable Transportation Highlights: November/December 2022 (Report No. FHWA-HEP-23-009). United States. Department of Transportation. Federal Highway Administration. Office of Natural Environment. https://rosap.ntl.bts.gov/view/dot/77007
United States. Department of Transportation. Federal Highway Administration. Office of Natural Environment. Air Quality + Sustainable Transportation Highlights: November/December 2022. Report no. FHWA-HEP-23-009. United States. Department of Transportation. Federal Highway Administration. Office of Natural Environment, 2022. https://rosap.ntl.bts.gov/view/dot/77007.
United States. Department of Transportation. Federal Highway Administration. Office of Natural Environment Air Quality + Sustainable Transportation Highlights: November/December 2022. United States. Department of Transportation. Federal Highway Administration. Office of Natural Environment, 2022, Report no. FHWA-HEP-23-009, ROSA P. https://rosap.ntl.bts.gov/view/dot/77007.
United States. Department of Transportation. Federal Highway Administration. Office of Highway Policy Information
2022-10-30
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The Weekly Traffic Volume Report estimates the vehicle miles traveled (VMT) for interstate highways and how the total travel measured by VMT compares with travel that occurred in the same week of the previous year. The VMT is further split into passenger vehicle and truck components. The information gives new insights into the effect on traffic by
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United States. Department of Transportation. Federal Highway Administration. Office of Highway Policy Information (2022). Special Monthly Reporting - Weekly Traffic Volume Data: Interstate Travel for Weeks 39, 40, 41, 42, and 43, 9/26/2022-10/30/2022. United States. Department of Transportation. Federal Highway Administration. Office of Highway Policy Information. https://rosap.ntl.bts.gov/view/dot/65628
United States. Department of Transportation. Federal Highway Administration. Office of Highway Policy Information. Special Monthly Reporting - Weekly Traffic Volume Data: Interstate Travel for Weeks 39, 40, 41, 42, and 43, 9/26/2022-10/30/2022. United States. Department of Transportation. Federal Highway Administration. Office of Highway Policy Information, 2022. https://rosap.ntl.bts.gov/view/dot/65628.
United States. Department of Transportation. Federal Highway Administration. Office of Highway Policy Information Special Monthly Reporting - Weekly Traffic Volume Data: Interstate Travel for Weeks 39, 40, 41, 42, and 43, 9/26/2022-10/30/2022. United States. Department of Transportation. Federal Highway Administration. Office of Highway Policy Information, 2022, ROSA P. https://rosap.ntl.bts.gov/view/dot/65628.
United States. Department of Transportation. Intelligent Transportation Systems Joint Program Office
2022-10-28
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This document provides examples of ITS technologies deployed to improve highway safety. The featured benefits are based on past evaluations of ITS projects contained in the ITS Databases at: www.itsknowledgeresources.its.dot.gov.
United States. Department of Transportation. Intelligent Transportation Systems Joint Program Office (2022). ITS for Highway Safety. United States. Department of Transportation. Intelligent Transportation Systems Joint Program Office. https://rosap.ntl.bts.gov/view/dot/65717
United States. Department of Transportation. Intelligent Transportation Systems Joint Program Office. ITS for Highway Safety. United States. Department of Transportation. Intelligent Transportation Systems Joint Program Office, 2022. https://rosap.ntl.bts.gov/view/dot/65717.
United States. Department of Transportation. Intelligent Transportation Systems Joint Program Office ITS for Highway Safety. United States. Department of Transportation. Intelligent Transportation Systems Joint Program Office, 2022, ROSA P. https://rosap.ntl.bts.gov/view/dot/65717.
United States. Department of Transportation. Federal Highway Administration. Office of Highway Policy Information
2022-10-28
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The Weekly Gasoline Product Supplied Report offers insight on weekly fluctuation of the gasoline product supply, which is an important part of any analysis of construction trends, materials and operating costs associated with highway repair and construction, and changes in traffic volume. These data come directly from the Energy Information Adminis
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United States. Department of Transportation. Federal Highway Administration. Office of Highway Policy Information (2022). Special Issue - Weekly Motor Fuel Report: Gasoline Product Supplied for Fiscal Year Week No. 4, Data Complete Through 10/28/2022. United States. Department of Transportation. Federal Highway Administration. Office of Highway Policy Information. https://rosap.ntl.bts.gov/view/dot/64868
United States. Department of Transportation. Federal Highway Administration. Office of Highway Policy Information. Special Issue - Weekly Motor Fuel Report: Gasoline Product Supplied for Fiscal Year Week No. 4, Data Complete Through 10/28/2022. United States. Department of Transportation. Federal Highway Administration. Office of Highway Policy Information, 2022. https://rosap.ntl.bts.gov/view/dot/64868.
United States. Department of Transportation. Federal Highway Administration. Office of Highway Policy Information Special Issue - Weekly Motor Fuel Report: Gasoline Product Supplied for Fiscal Year Week No. 4, Data Complete Through 10/28/2022. United States. Department of Transportation. Federal Highway Administration. Office of Highway Policy Information, 2022, ROSA P. https://rosap.ntl.bts.gov/view/dot/64868.
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