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Sum-Power Minimization in Multiuser Single-DF-Relay Networks with Direct Links
Author(s) -
Shiguo Wang,
Haixia Peng,
Xianru Liu
Publication year - 2016
Publication title -
international journal of distributed sensor networks
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.324
H-Index - 53
eISSN - 1550-1477
pISSN - 1550-1329
DOI - 10.1155/2016/8467294
Subject(s) - karush–kuhn–tucker conditions , relay , computer science , mathematical optimization , power (physics) , transmission (telecommunications) , wireless , energy consumption , minification , computer network , telecommunications , mathematics , electrical engineering , physics , quantum mechanics , programming language , engineering
Forming cooperation through relay’s assistance is a promising method to realize green communication by reducing transmission power. In this paper, for multiuser single-DF-relay wireless networks with direct links, the optimal power allocation strategy that minimizes system-sum-power consumption is investigated. Based on the principle that minimizing system-sum-power consumption is equivalent to maximizing system energy efficiency, users are classified into two parts after comparing the channel gains between source-destination link and relay-destination link. The optimal power allocation strategy of one part is determined directly, and minimizing the system-sum-power consumption of the other part is converted into minimizing source-sum-power consumption, which can be solved easily through Karush-Kuhn-Tucker KKT condition. Through numerical simulations, we further justified the effectiveness of our scheme compared to existing works.

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