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Featured researches published by Xiao-Yun Lu.


Transportation Research Record | 2010

Estimation of Freeway Traffic Density with Loop Detector and Probe Vehicle Data

Tony Z. Qiu; Xiao-Yun Lu; Andy H. F. Chow; Steven E. Shladover

Density, speed, and flow are the three critical parameters for traffic analysis. High-performance traffic management and control require the estimation–prediction of space mean speed and density for large spatial and temporal coverage. Speed, including spot mean speed and space mean speed, and flow estimation are relatively easy to measure and estimate, while less attention has been devoted to measuring and estimating density. Because IntelliDrive (previously known as vehicle infrastructure integration) is a promising technology for providing a new type of real-time traffic data, and loop detector systems have already been widely deployed, this paper proposes a method to estimate freeway traffic density with both loop detector data and IntelliDrive-based probe vehicle data. The proposed method has been validated with Berkeley Highway Laboratory loop detector data combined with field-collected probe vehicle data in the first validation study and next-generation simulation video trajectory data in the second validation test. The algorithm can be used offline and in real time.


Transportation Research Board 94th Annual Meeting | 2015

Cooperative Adaptive Cruise Control: Definitions and Operating Concepts

Steven E. Shladover; Christopher Nowakowski; Xiao-Yun Lu; Robert Ferlis


Transportation Research Board 95th Annual Meeting | 2016

Operational Concepts for Truck Cooperative Adaptive Cruise Control (CACC) Maneuvers

Christopher Nowakowski; Deborah Thompson; Steven E. Shladover; Aravind Kailas; Xiao-Yun Lu


Presented at: 89th Annual meeting of the Transportation Research Board, Washington, DC. (2010) | 2010

An empirical study of traffic speed-drop for freeway management

Andy H. F. Chow; Xiao-Yun Lu; Zhi-Jun Qiu; Steven E. Shladover; Hwasoo Yeo


Transportation Research Board 96th Annual MeetingTransportation Research Board | 2017

An Enhanced Microscopic Traffic Simulation Model for Application to Connected Automated Vehicles

Xiao-Yun Lu; Xingan Kan; Steven E. Shladover; Dali Wei; Robert A Ferlis


Archive | 2009

Development and Evaluation of Selected Mobility Applications for VII: Concept of Operations

Steven E. Shladover; Xiao-Yun Lu; Delphine Cody


Archive | 2007

Onboard Monitoring and Reporting for Commercial Motor Vehicle Safety Final Report

James A Misener; Christopher Nowakowski; Xiao-Yun Lu; Thomas Koo; J D Margulici; John Spring; Scott Johnston; ZuWhan Kim; Sue Dickey; Kenny Kuhn; Paul Kretz; Jerry Robin; Martin Walker


Archive | 2018

Using Cooperative Adaptive Cruise Control (CACC) to Form High-Performance Vehicle Streams:Simulation Results Analysis

Hao Liu; Xingan Kan; Steven E. Shladover; Xiao-Yun Lu


Archive | 2018

Using Cooperative Adaptive Cruise Control (CACC) to Form High-Performance Vehicle Streams. FINAL REPORT

Hao Liu; Lin Xiao; Xingan Kan; Steven E. Shladover; Xiao-Yun Lu; Meng Wang; W.J. Schakel; Bart van Arem


Archive | 2018

Using Cooperative Adaptive Cruise Control (CACC) to Form High-Performance Vehicle Streams. Microscopic Traffic Model Calibration and Validation

Xingan Kan; Hao Liu; Steven E. Shladover; Xiao-Yun Lu

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Xingan Kan

University of California

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Hao Liu

University of California

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Scott Johnston

University of California

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David Marco

University of California

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John Spring

University of California

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Wei-Bin Zhang

University of California

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Yongquan Zhang

University of California

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