DocumentCode
57319
Title
Bayesian Design of Tandem Networks for Distributed Detection With Multi-Bit Sensor Decisions
Author
Tarighati, Alla ; Jalden, Joakim
Author_Institution
Dept. of Signal Process., KTH R. Inst. of Technol., Stockholm, Sweden
Volume
63
Issue
7
fYear
2015
fDate
1-Apr-15
Firstpage
1821
Lastpage
1831
Abstract
We consider the problem of decentralized hypothesis testing under communication constraints in a topology where several peripheral nodes are arranged in tandem. Each node receives an observation and transmits a message to its successor, and the last node then decides which hypothesis is true. We assume that the observations at different nodes are, conditioned on the true hypothesis, independent and the channel between any two successive nodes is considered error-free but rate-constrained. We propose a cyclic numerical design algorithm for the design of nodes using a person-by-person methodology with the minimum expected error probability as a design criterion, where the number of communicated messages is not necessarily equal to the number of hypotheses. The number of peripheral nodes in the proposed method is in principle arbitrary and the information rate constraints are satisfied by quantizing the input of each node. The performance of the proposed method for different information rate constraints, in a binary hypothesis test, is compared to the optimum rate-one solution due to Swaszek and a method proposed by Cover, and it is shown numerically that increasing the channel rate can significantly enhance the performance of the tandem network. Simulation results for M-ary hypothesis tests also show that by increasing the channel rates the performance of the tandem network significantly improves.
Keywords
belief networks; numerical analysis; wireless sensor networks; Bayesian design; M-ary hypothesis tests; Swaszek; distributed detection; multi-bit sensor decisions; numerical design algorithm; peripheral nodes; person-by-person methodology; tandem networks; Error probability; Network topology; Optimization; Signal processing algorithms; Testing; Topology; Wireless sensor networks; Bayesian criterion; decentralized detection; person-byperson optimization; tandem networks;
fLanguage
English
Journal_Title
Signal Processing, IEEE Transactions on
Publisher
ieee
ISSN
1053-587X
Type
jour
DOI
10.1109/TSP.2015.2401535
Filename
7035057
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