Title :
Localization of wireless sensor networks with concurrently used identification sequences
Author :
Schlupkothen, Stephan ; Ascheid, Gerd
Author_Institution :
Dept. of Integrated Signal Process. Syst., RWTH Aachen Univ., Aachen, Germany
Abstract :
In very large distributed sensor networks, transmission identifiers have to be shared among several nodes due to limited bandwidth and hardware resources. In this work, we propose and investigate an algorithm targeting this issue of nonunique identification in the framework of network localization. Our proposed method is based on a two-stage approach: The estimation of adjacency information based on the range measurements, and a maximum-likelihood (ML) estimation of the sensor that transmitted the ranging-pulse. The first stage can be formulated as a binary linear feasibility problem that is capable of significantly reducing the computational complexity and increasing the performance of the second stage. Our approach is compared to a method that does not exploit the estimated adjacency information. We show that our algorithm enables outstanding localization performance, also when using only few distinct transmission ID sequences.
Keywords :
computational complexity; maximum likelihood estimation; wireless sensor networks; adjacency information estimation; binary linear feasibility problem; computational complexity; distributed sensor networks; identification sequences; maximum-likelihood estimation; network localization; transmission identifiers; wireless sensor networks; Distance measurement; Estimation; Silicon; Spread spectrum communication; Tin; Transmitters; Wireless sensor networks;
Conference_Titel :
Ad Hoc Networking Workshop (MED-HOC-NET), 2015 14th Annual Mediterranean
Conference_Location :
Vilamoura
DOI :
10.1109/MedHocNet.2015.7173166