Title :
Average consensus with minimum energy consumption: Optimal topology and power allocation
Author :
Sardellitti, S. ; Barbarossa, S. ; Swami, A.
Author_Institution :
INFOCOM Dept., Univ. of of Rome “La Sapienza”, Rome, Italy
Abstract :
Consensus algorithms have generated a lot of interest due to their simplicity in computing globally relevant statistics exploiting only local communications among sensors. However, the inherent iterative nature of consensus algorithms makes them prone to a possibly large energy consumption. Because of the strong energy constraints of wireless sensor networks, it is then of interest to minimize energy consumption necessary to achieve consensus, within a prescribed accuracy requirement. In this work, we propose a method for optimizing the network topology and power allocation over each link, in order to minimize energy consumption, while ensuring that the network reaches a global consensus. Interestingly, we show how to introduce a relaxation in the topology optimization that converts a combinatorial problem into a convex-concave fractional problem. The results show how the sparsity of the resulting network depends on the propagation model.
Keywords :
concave programming; convex programming; energy conservation; graph theory; network theory (graphs); wireless sensor networks; accuracy requirement; average consensus algorithm; combinatorial problem; convex-concave fractional problem; energy constraints; energy consumption minimization; global consensus; local communications; minimum energy consumption; network sparsity; network topology optimization; optimal topology; power allocation optimization; propagation model; wireless sensor networks; Convergence; Energy consumption; Laplace equations; Network topology; Optimization; Sensors; Topology;
Conference_Titel :
Signal Processing Conference, 2010 18th European
Conference_Location :
Aalborg