Title :
Energy-Neutral Source-Channel Coding with Battery and Memory Size Constraints
Author :
Castiglione, Paolo ; Matz, Gerald
Author_Institution :
AKG Acoust. GmbH (Harman Int.), Vienna, Austria
Abstract :
We study energy management policies for the compression and transmission of source data collected by an energy-harvesting sensor node with a finite energy buffer (e.g., rechargeable battery) and a finite data buffer (memory) between source encoder and channel encoder. The sensor node can adapt the source and channel coding rates depending on the observation and channel states. In such a system, the absence of precise information about the amount of energy available in the future is a key challenge. We provide analytical bounds and scaling laws for the average distortion that depend on the size of the energy and data buffers. We furthermore design a resource allocation policy that achieves almost optimal distortion scaling. Our results demonstrate that the energy leakage of state of art energy management policies can be avoided by jointly controlling the source and channel coding rates.
Keywords :
channel coding; energy harvesting; optimisation; source coding; telecommunication power management; wireless sensor networks; analytical bounds; art energy management policy; battery constraint; energy harvesting sensor; energy leakage; energy neutral source channel coding; finite data buffer; memory size constraint; Batteries; Encoding; Energy harvesting; Energy management; Markov processes; Memory management; Signal to noise ratio; Transmitters; Energy harvesting; Markov processes; multimedia wireless sensors; optimal power allocation; source-channel coding;
Journal_Title :
Communications, IEEE Transactions on
DOI :
10.1109/TCOMM.2014.021514.130687