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Identification of Low-Level Point Radiation Sources Using a Sensor Network
Conference proceeding

Identification of Low-Level Point Radiation Sources Using a Sensor Network

Nageswara S. V. Rao, Mallikarjun Shankar, Jren-Chit Chin, David K. Y. Yau, Srinivasagopalan Srivathsan, S. Sitharama Iyengar, Yong Yang, Jennifer C. Hou and King Yeung Yau
Proceedings of the 7th international conference on Information processing in sensor networks, pp.493-504
ACM Conferences
22/04/2008

Abstract

Applied computing -- Physical sciences and engineering -- Chemistry Hardware -- Communication hardware, interfaces and storage -- Signal processing systems Mathematics of computing -- Probability and statistics -- Probabilistic algorithms Mathematics of computing -- Probability and statistics -- Probabilistic reasoning algorithms -- Markov-chain Monte Carlo methods Mathematics of computing -- Probability and statistics -- Probabilistic reasoning algorithms -- Sequential Monte Carlo methods Theory of computation -- Design and analysis of algorithms -- Approximation algorithms analysis -- Routing and network design problems
Identification of a low-level point radiation source amidst background radiation is achieved by a network of radiation sensors using a two-step approach. Based on measurements from three sensors, the geometric difference triangulation method is used to estimate the location and strength of the source. Then a sequential probability ratio test based on current measurements and estimated parameters is employed to finally decide: (1) the presence of a source with the estimated parameters, or (2) the absence of the source, or (3) the insufficiency of measurements to make a decision. This method achieves specified levels of false alarm and missed detection probabilities, while ensuring a close-to-minimal number of measurements for reaching a decision. This method minimizes the ghost-source problem of current estimation methods, and achieves a lower false alarm rate compared with current detection methods. This method is tested and demonstrated using: (1) simulations, and (2) a test-bed that utilizes the scaling properties of point radiation sources to emulate high intensity ones that cannot be easily and safely handled in laboratory experiments.

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