DocumentCode :
260826
Title :
Distributed social welfare maximization in vehicular participatory sensing systems
Author :
Qingwen Zhao ; Yanmin Zhu
Author_Institution :
Dept. of Comput. Sci. & Eng., Shanghai Jiao Tong Univ., Shanghai, China
fYear :
2014
fDate :
26-27 May 2014
Firstpage :
332
Lastpage :
337
Abstract :
We consider the crucial problem of maximizing the social welfare of a vehicular participatory sensing system which consists of mobile source vehicles that collect sensing data on the move and relay vehicles that forward sensing data to the central sensing platform. Three issues should be taken into consideration, i.e., sensing rate control, flow control and transmission, incentives for vehicles to participate. It is highly challenging to achieve the optimal social welfare, given the arbitrary unknown contact events and the dynamic network formed by mobile vehicles. To tackle the challenges, we propose a fully distributed optimal control algorithm DBC to maximize the social welfare while keeping good network stability. Exploiting the stochastic Lyapunov optimization technique, it derives an optimal control strategy for sensing rate control and flow control. Rigorous theoretical analysis shows the gap between the DBC and the optimum is only O(1/V), where V is a tradeoff parameter between social welfare and network stability. In addition, we have conducted extensive simulations based on real taxi GPS traces, and the results show the efficacy of DBC.
Keywords :
Global Positioning System; Lyapunov methods; distributed control; flow control; networked control systems; optimal control; optimisation; road traffic control; road vehicles; sensors; stability; stochastic processes; vehicular ad hoc networks; DBC; central sensing platform; contact events; distributed optimal control algorithm; distributed social welfare maximization; dynamic network; flow control; flow transmission; mobile source vehicles; network stability; optimal social welfare; real taxi GPS traces; sensing data; sensing rate control; stochastic Lyapunov optimization technique; vehicular ad hoc network; vehicular participatory sensing systems; Algorithm design and analysis; Measurement; Optimization; Relays; Sensors; Stability analysis; Vehicles;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Quality of Service (IWQoS), 2014 IEEE 22nd International Symposium of
Conference_Location :
Hong Kong
Type :
conf
DOI :
10.1109/IWQoS.2014.6914337
Filename :
6914337
Link To Document :
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