Title :
Rate-Optimal Coding Design in Joint Transfer of Energy and Information
Author :
Sixing Yin ; Zhaowei Qu
Author_Institution :
Sch. of Inf. & Commun. Eng., Beijing Univ. of Posts & Telecommun., Beijing, China
Abstract :
In this letter, performance optimization for information transfer in a binary and noiseless one-way information transmission system is investigated from the perspective of information source design (e.g., coding scheme) while considering the amount of energy that can be transferred. We propose a variable-length coding scheme and address two problems to optimize the information rate: (1) to determine a proper number of channel use (or maximal codeword length) while a fixed amount of energy is to be transferred; (2) to determine a proper amount of energy to be transferred while information is required to be transferred within a fixed number of channel use. The two problems are both formulated as integer fractional programming problems and the optimal solutions are derived with in-depth analysis. For both problems, numerical results show that the proposed variable-length coding scheme with the optimal amount of energy to be transferred or optimal number of channel use outperforms the coding strategy in an existing work.
Keywords :
channel coding; integer programming; numerical analysis; variable length codes; binary one-way information transmission system; channel use; information rate optimization; information source design; integer fractional programming problems; joint energy transfer; joint information transfer; maximal codeword length; noiseless one-way information transmission system; performance optimization; rate-optimal coding design; variable-length coding scheme; Encoding; Information rates; Joints; Linear programming; Optimization; Programming; Wireless communication; Information and energy transfer; energy harvesting; source coding;
Journal_Title :
Communications Letters, IEEE
DOI :
10.1109/LCOMM.2015.2410291