Energy-efficient Decision Fusion for Distributed Detection in Wireless Sensor Networks
N. Sriranga, K. G. Nagananda, R. S. Blum, A. Saucan, P. K. Varshney

TL;DR
This paper introduces an energy-efficient sensor transmission ordering scheme for distributed detection in wireless sensor networks, reducing sensor transmissions while maintaining detection accuracy.
Contribution
It proposes a novel ordering-based counting rule that significantly decreases sensor transmissions without compromising detection performance.
Findings
Achieves same error probability with fewer than N/2 transmissions
Reduces sensor transmissions by up to (N-1) in some cases
Improves energy efficiency in large-scale sensor networks
Abstract
This paper proposes an energy-efficient counting rule for distributed detection by ordering sensor transmissions in wireless sensor networks. In the counting rule-based detection in an sensor network, the local sensors transmit binary decisions to the fusion center, where the number of all local-sensor detections are counted and compared to a threshold. In the ordering scheme, sensors transmit their unquantized statistics to the fusion center in a sequential manner; highly informative sensors enjoy higher priority for transmission. When sufficient evidence is collected at the fusion center for decision making, the transmissions from the sensors are stopped. The ordering scheme achieves the same error probability as the optimum unconstrained energy approach (which requires observations from all the sensors) with far fewer sensor transmissions. The scheme proposed in this…
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Taxonomy
TopicsDistributed Sensor Networks and Detection Algorithms · Target Tracking and Data Fusion in Sensor Networks · Energy Efficient Wireless Sensor Networks
