My Account Log in

2 options

Developing analysis, modeling, and simulation tools for connected automated vehicle applications : a case study on SR 99 in California / Hao Liu, Xiao-Yun Lu, Steven E. Shladover, and Zhitong Huang.

Connect to full text Available online

View online

U.S. Government Documents Available online

View online
Format:
Book
Government document
Author/Creator:
Liu, Hao, author.
Lu, Xiao-Yun, author.
Shladover, S., author.
Huang, Zhitong, author.
Contributor:
Leidos, Inc., researcher.
University of California, Los Angeles, researcher.
United States. Federal Highway Administration, sponsoring body.
Turner-Fairbank Highway Research Center, issuing body.
Language:
English
Subjects (All):
Intelligent transportation systems--California--Simulation methods.
Intelligent transportation systems.
Intelligent transportation systems--Simulation methods.
California.
Physical Description:
1 online resource (vi, 35 pages) : illustrations
Place of Publication:
McLean, VA : U.S. Department. of Transportation, Federal Highway Administration, Research, Development, and Technology, Turner-Fairbank Highway Research Center, March 2021.
Language Note:
English
Summary:
The purpose of this report is to document a simulation-based case study investigating the effectiveness of SAE J3016 Level 1 automation technology for mitigating or solving existing transportation problems related to congestion, fuel consumption, and emissions.(1) This case study examined the impacts of cooperative adaptive cruise control (CACC) vehicle string operations on traffic performance and fuel consumption on the 13-mi SR 99 northbound corridor from Elk Grove Boulevard to SR 50 near Sacramento. The research team evaluated the performance of the busy urban corridor under various CACC market penetration scenarios, traffic demand inputs, and CACC management strategies. Specifically, the research team examined average vehicle speed, average vehicle miles traveled per gallon of fuel consumed, average string length, and CACC vehicle string probability (i.e., the probability of a CACC vehicle operating in a string) at CACC market penetration rates of 0, 20, 40, 60, 80, and 100 percent. The study investigated the corridor's spatiotemporal traffic patterns under the existing traffic demand and with the demand increased by 20 percent. Additionally, it analyzed CACC string operation after vehicle awareness device and CACC managed lane strategies were implemented.
Notes:
"Performing Organization: Leidos, Inc.; University of California, Los Angeles"--Technical Report Documentation Page.
"March 2021."
"Publication FHWA-HRT-21-039."
"HRDO-30/03-21(WEB)E"--Page 4 of cover.
Includes bibliographical references (pages 33-35)
OCLC:
1252634098
Access Restriction:
Open access content Open access content

The Penn Libraries is committed to describing library materials using current, accurate, and responsible language. If you discover outdated or inaccurate language, please fill out this feedback form to report it and suggest alternative language.

Find

Home Release notes

My Account

Shelf Request an item Bookmarks Fines and fees Settings

Guides

Using the Find catalog Using Articles+ Using your account