Title :
Synchronization-Free Delay Tomography Based on Compressed Sensing
Author :
Nakanishi, Kensuke ; Hara, Satoshi ; Matsuda, Tadamitsu ; Takizawa, Kenichi ; Ono, Fumie ; Miura, Ryu
Author_Institution :
Grad. Sch. of Eng., Osaka City Univ., Osaka, Japan
Abstract :
Delay tomography has so far burdened source and receiver measurement nodes in a network with two requirements: path establishment and clock synchronization between them. In this letter, we focus on the clock synchronization problem in delay tomography and propose a synchronization-free delay tomography scheme based on compressed sensing. The proposed scheme selects a path between source and receiver measurement nodes as the reference path, which results in a loss of equation in a conventional delay tomography problem. By utilizing compressed sensing, however, the proposed scheme becomes robust to the loss. Simulation experiments confirm that the proposed scheme works comparable to a conventional delay tomography scheme in a network with no clock synchronization between source and receiver measurement nodes.
Keywords :
compressed sensing; delays; synchronisation; wireless sensor networks; clock synchronization; compressed sensing; path establishment; receiver measurement nodes; source measurement nodes; synchronization-free delay tomography; Compressed sensing; Delays; Receivers; Routing; Synchronization; Tomography; Vectors; Delay tomography; clock synchronization; compressed sensing;
Journal_Title :
Communications Letters, IEEE
DOI :
10.1109/LCOMM.2014.2334303