A Distributed Algorithm for Joint Sensing and Routing in Wireless Networks with Non-Steerable Directional Antennas
- 1 November 2006
- conference paper
- Published by Institute of Electrical and Electronics Engineers (IEEE)
- p. 218-227
- https://doi.org/10.1109/icnp.2006.320215
Abstract
In many energy-rechargeable wireless sensor networks, sensor nodes must both sense data from the environment, and cooperatively forward sensed data to data sinks. Both data sensing and data forwarding (including data transmission and reception) consume energy at sensor nodes. We present a distributed algorithm for optimal joint allocation of energy between sensing and communication at each node to maximize overall system utility (i.e., the aggregate amount of information received at the data sinks). We consider this problem in the context of wireless sensor networks with directional, non-steerable antennas. We first formulate a joint data-sensing and data-routing optimization problem with both per-node energy-expenditure constraints, and traditional flow routing/conservation constraints. We then simplify this problem by converting it to an equivalent routing problem, and present a distributed gradient-based algorithm that iteratively adjusts the per-node amount of energy allocated between sensing and communication to reach the system-wide optimum. We prove that our algorithm converges to the maximum system utility. We quantitatively demonstrate the energy balance achieved by this algorithm in a network of small, energy-constrained X-band radars, connected via point- to-point 802.11 links with non-steerable directional antennas.Keywords
This publication has 12 references indexed in Scilit:
- A Distributed Algorithm for Joint Sensing and Routing in Wireless Networks with Non-Steerable Directional AntennasPublished by Institute of Electrical and Electronics Engineers (IEEE) ,2006
- Partially overlapped channels not considered harmfulACM SIGMETRICS Performance Evaluation Review, 2006
- Principles and design considerations for short-range energy balanced radar networksPublished by Institute of Electrical and Electronics Engineers (IEEE) ,2005
- Fair resource allocation in wireless networks using queue-length-based scheduling and congestion controlPublished by Institute of Electrical and Electronics Engineers (IEEE) ,2005
- Simultaneous Routing and Resource Allocation Via Dual DecompositionIEEE Transactions on Communications, 2004
- Performance aware tasking for environmentally powered sensor networksPublished by Association for Computing Machinery (ACM) ,2004
- Convex OptimizationPublished by Cambridge University Press (CUP) ,2004
- Connecting the physical world with pervasive networksIEEE Pervasive Computing, 2002
- Rate control for communication networks: shadow prices, proportional fairness and stabilityJournal of the Operational Research Society, 1998
- Charging and rate control for elastic trafficEuropean Transactions on Telecommunications, 1997