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A Review of Communication, Driver Characteristics, and Controls Aspects of Cooperative Adaptive Cruise Control (CACC)

IEEE Transactions on Intelligent Transportation Systems · 2015 · Vol. 17(2) · pp. 491–509
Kakan DeyYan LiXujie WangYue WangHaiying ShenMashrur ChowdhuryLei YuChenxi QiuVivekgautham Soundararaj

Abstract

Cooperative adaptive cruise control (CACC) systems have the potential to increase traffic throughput by allowing smaller headway between vehicles and moving vehicles safely in a platoon at a harmonized speed. CACC systems have been attracting significant attention from both academia and industry since connectivity between vehicles will become mandatory for new vehicles in the USA in the near future. In this paper, we review three basic and important aspects of CACC systems: communications, driver characteristics, and controls to identify the most challenging issues for their real-world deployment. Different routing protocols that support the data communication requirements between vehicles in the CACC platoon are reviewed. Promising and suitable protocols are identified. Driver characteristics related issues, such as how to keep drivers engaged in driving tasks during CACC operations, are discussed. To achieve mass acceptance, the control design needs to depict real-world traffic variability such as communication effects, driver behavior, and traffic composition. Thus, this paper also discusses the issues that existing CACC control modules face when considering close to ideal driving conditions.

Traffic control and managementVehicular Ad Hoc Networks (VANETs)Traffic Prediction and Management TechniquesCooperative Adaptive Cruise ControlPlatoonCruise controlHeadwaySoftware deploymentControl (management)EngineeringThroughputComputer scienceTransport engineering

Funding

  • Microsoft Research
  • Sandia National Laboratories
Citations
531
FWCI
28.59
field-weighted impact
References
215
Percentile
100%
vs. same field & year
Citations per year
References
VADD: Vehicle-Assisted Data Delivery in Vehicular <i>Ad Hoc</i> Networks
IEEE Transactions on Vehicular Technology · 2008 · 784 citations
Cooperative Adaptive Cruise Control: Network-Aware Analysis of String Stability
IEEE Transactions on Intelligent Transportation Systems · 2014 · 411 citations
Effects of Adaptive Cruise Control Systems on Highway Traffic Flow Capacity
Transportation Research Record Journal of the Transportation Research Board · 2002 · 267 citations
Research advances in intelligent collision avoidance and adaptive cruise control
IEEE Transactions on Intelligent Transportation Systems · 2003 · 827 citations
Calibrating Car-Following Models by Using Trajectory Data
Transportation Research Record Journal of the Transportation Research Board · 2008 · 432 citations
The Impact of Cooperative Adaptive Cruise Control on Traffic-Flow Characteristics
IEEE Transactions on Intelligent Transportation Systems · 2006 · 1,476 citations
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