Coverage-Guaranteed and Energy-Efficient Participant Selection Strategy in Mobile Crowdsensing

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초록

In mobile crowdsensing (MCS), a participant selection strategy should be carefully designed to guarantee sufficient coverage and avoid unnecessary energy consumption. In this paper, we propose a coverage-guaranteed and energy-efficient participant selection (CG-EEPS) strategy, in which the MCS server determines participants based on the data usage profile and mobility level of mobile devices. In addition, CG-EEPS adopts a piggyback approach of sensory data for energy-efficient transmissions. To attain the optimal performance in CG-EEPS, a constraint Markov decision process (CMDP) problem is formulated and its optimal policy is obtained by a linear programming. To address the curse of dimensionality in CMDP, a greedy heuristic is proposed and evaluated. Trace-driven evaluation results demonstrate that CG-EEPS can achieve sufficient coverage rate only with 20% of participants compared to random selection schemes.

키워드

Constraint Markov decision process (CMDP)coverageenergymobile crowdsensing (MCS)piggybackMANAGEMENT
제목
Coverage-Guaranteed and Energy-Efficient Participant Selection Strategy in Mobile Crowdsensing
저자
Ko, HaneulPack, SangheonLeung, Victor C. M.
DOI
10.1109/JIOT.2018.2880463
발행일
2019-04
유형
Article
저널명
IEEE Internet of Things Journal
6
2
페이지
3202 ~ 3211