Missing observation approximation for spatio-temporal profile reconstruction in participatory sensor networks

PurposeParticipatory wireless sensor networks (PWSN) is an emerging paradigm that leverages existing sensing and communication infrastructures for the sensing task. Various environmental phenomenon – P monitoring applications dealing with noise pollution, road traffic, requiring spatio-temporal data...

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Veröffentlicht in:International journal of crowd science 2018-11, Vol.2 (2), p.108-122
Hauptverfasser: Mehmood, Assad, Zia, Kashif, Muhammad, Arshad, Kumar Saini, Dinesh
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Sprache:eng
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Zusammenfassung:PurposeParticipatory wireless sensor networks (PWSN) is an emerging paradigm that leverages existing sensing and communication infrastructures for the sensing task. Various environmental phenomenon – P monitoring applications dealing with noise pollution, road traffic, requiring spatio-temporal data samples of P (to capture its variations and its profile construction) in the region of interest – can be enabled using PWSN. Because of irregular distribution and uncontrollable mobility of people (with mobile phones), and their willingness to participate, complete spatio-temporal (CST) coverage of P may not be ensured. Therefore, unobserved data values must be estimated for CST profile construction of P and presented in this paper.Design/methodology/approachIn this paper, the estimation of these missing data samples both in spatial and temporal dimension is being discussed, and the paper shows that non-parametric technique – Kernel Regression – provides better estimation compared to parametric regression techniques in PWSN context for spatial estimation. Furthermore, the preliminary results for estimation in temporal dimension have been provided. The deterministic and stochastic approaches toward estimation in the context of PWSN have also been discussed.FindingsFor the task of spatial profile reconstruction, it is shown that non-parametric estimation technique (kernel regression) gives a better estimation of the unobserved data points. In case of temporal estimation, few preliminary techniques have been studied and have shown that further investigations are required to find out best estimation technique(s) which may approximate the missing observations (temporally) with considerably less error.Originality/valueThis study addresses the environmental informatics issues related to deterministic and stochastic approaches using PWSN.
ISSN:2398-7294
2398-7294
DOI:10.1108/IJCS-05-2018-0009