Traffic flow monitoring systems in smart cities: Coverage and distinguishability among vehicles

Journal of Parallel and Distributed Computing - Tập 127 - Trang 224-237 - 2019
Huanyang Zheng1, Wei Chang2, Jie Wu1
1Computer and Information Sciences, Temple University, Philadelphia, PA, 19122, United States
2Computer Science, Saint Joseph’s University, Philadelphia, PA, 19131, United States

Tài liệu tham khảo

Abumansoor, 2012, A secure cooperative approach for nonline-of-sight location verification in VANET, IEEE Trans. Veh. Technol., 61, 275, 10.1109/TVT.2011.2174465 Cardei, 2005, Energy-efficient target coverage in wireless sensor networks, 1976 Deshpande, 2014, Approximation algorithms for stochastic boolean function evaluation and stochastic submodular set cover, 1453 Deshpande, 2016, Approximation algorithms for stochastic submodular set cover with applications to boolean function evaluation and min-knapsack, ACM Trans. Algorithms, 12, 42, 10.1145/2876506 Dughmi, 2017, Algorithmic information structure design: a survey, ACM SIGecom Exch., 15, 2, 10.1145/3055589.3055591 Feldman, 2014, Constrained monotone function maximization and the supermodular degree, 1 Fujishige, 2011, A submodular function minimization algorithm based on the minimum-norm base, Pac. J. Optim., 7, 3 Guha, 2012, Autowitness: locating and tracking stolen property while tolerating gps and radio outages, ACM Trans. Sens. Netw., 8, 31, 10.1145/2240116.2240120 He, 2016, Service placement for detecting and localizing failures using end-to-end observations, 560 Higuchi, 2015, AnonyCast: privacy-preserving location distribution for anonymous crowd tracking systems, 1119 Ishtiaq Roufa, 2010, Security and privacy vulnerabilities of in-car wireless networks: A tire pressure monitoring system case study, 11 Janecek, 2012, Cellular data meet vehicular traffic theory: location area updates and cell transitions for travel time estimation, 361 Javali, 2016, I am alice, i was in wonderland: Secure location proof generation and verification protocol, 477 Jetcheva, 2003, Design and evaluation of a metropolitan area multitier wireless ad hoc network architecture, 32 Jin, 2013, A robust indoor pedestrian tracking system with sparse infrastructure support, IEEE Trans. Mob. Comput., 12, 1392, 10.1109/TMC.2012.110 Khan, 2014, OTIT: Towards secure provenance modeling for location proofs, 87 Lee, 2014, Design and implementation of vehicle tracking system using GPS/GSM/GPRS technology and smartphone application, 353 Maurya, 2012, Real time vehicle tracking system using GSM and GPS technology-an anti-theft tracking system, IJSE, 1956 Necula, 2015, Analyzing traffic patterns on street segments based on GPS data using R, Trans. Res. Procedia, 10, 276, 10.1016/j.trpro.2015.09.077 Perera, 2012, Maritime traffic monitoring based on vessel detection, tracking, state estimation, and trajectory prediction, IEEE Trans. Intell. Transp. Syst., 13, 1188, 10.1109/TITS.2012.2187282 Pham, 2016, Securerun: Cheat-proof and private summaries for location-based activities, IEEE Trans. Mob. Comput., 15, 2109, 10.1109/TMC.2015.2483498 Reis, 2014, Deploying roadside units in sparse vehicular networks: what really works and what does not, IEEE Trans. Veh. Technol., 63, 2794, 10.1109/TVT.2013.2292519 Sen, 2012, Kyun queue: a sensor network system to monitor road traffic queues, 127 Sivaraman, 2013, Integrated lane and vehicle detection, localization, and tracking: A synergistic approach, IEEE Trans. Intell. Transp. Syst., 14, 906, 10.1109/TITS.2013.2246835 Sivaraman, 2013, Looking at vehicles on the road: A survey of vision-based vehicle detection, tracking, and behavior analysis, IEEE Trans. Intell. Transp. Syst., 14, 1773, 10.1109/TITS.2013.2266661 Sviridenko, 2015, Optimal approximation for submodular and supermodular optimization with bounded curvature, 1134 Thiagarajan, 2010, Cooperative transit tracking using smart-phones, 85 Tzoumas, 2016, Minimal actuator placement with bounds on control effort, IEEE Trans. Control Netw. Syst., 3, 67, 10.1109/TCNS.2015.2444031 Wang, 2016, STAMP: enabling privacy-preserving location proofs for mobile users, IEEE/ACM Trans. Netw., 24, 3276, 10.1109/TNET.2016.2515119 Xu, 2013, A randomized algorithm for roadside units placement in vehicular ad hoc network, 193 Yao, 2017, LORA: Loss differentiation rate adaptation scheme for vehicle-to-vehicle safety communications, IEEE Trans. Veh. Technol., 66, 2499, 10.1109/TVT.2016.2573924 Zhang, 2015, VProof: Lightweight privacy-preserving vehicle location proofs, IEEE Trans. Veh. Technol., 64, 378, 10.1109/TVT.2014.2321666 Zhao, 2015, VeTrack: Real time vehicle tracking in uninstrumented indoor environments, 99 Zheng, 2016, Coverage and distinguishability requirements for traffic flow monitoring systems, 1 Zheng, 2015, Optimizing roadside advertisement dissemination in vehicular cyber-physical systems, 41 Zhu, 2013, Toward privacy preserving and collusion resistance in a location proof updating system, IEEE Trans. Mob. Comput., 12, 51, 10.1109/TMC.2011.237 Zhu, 2012, A survey on coverage and connectivity issues in wireless sensor networks, J. Netw. Comput. Appl., 35, 619, 10.1016/j.jnca.2011.11.016