杭州电子科技大学通信工程学院,杭州,310018
网络首发:2017-08-10,
纸质出版:2017
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伍伟伟, 许晓荣, 王云川, 等. 采用注水因子辅助搜索的能效优先子载波功率联合优化算法[J]. 西安交通大学学报, 2017,51(8):59-64+71.
Joint Optimization Algorithm for Subcarrier and Power with Priority of Energy Efficiency Based on Water-Filling Factor Aided Search[J]. 2017, 51(8): 59-64+71.
伍伟伟, 许晓荣, 王云川, 等. 采用注水因子辅助搜索的能效优先子载波功率联合优化算法[J]. 西安交通大学学报, 2017,51(8):59-64+71. DOI: 10.7652/xjtuxb201708010.
Joint Optimization Algorithm for Subcarrier and Power with Priority of Energy Efficiency Based on Water-Filling Factor Aided Search[J]. 2017, 51(8): 59-64+71. DOI: 10.7652/xjtuxb201708010.
针对认知无线网络中以频带利用率为目标进行资源分配网络能效低的问题
提出了一种采用注水因子辅助搜索的能效优先子载波功率联合优化(EE-WFAS)算法。首先
以最大化认知用户总能效作为优化目标
考虑在认知用户发射功率控制、主用户干扰功率限制和认知用户最低信息传输速率限制等多个约束条件下
构造最优化函数; 然后
通过能效优先子载波分配与注水因子辅助搜索(WFAS)的功率分配求解优化函数
即根据认知用户的信道增益和能效进行子载波分配; 最后
对拉格朗日乘子运用二分查找法结合WFAS进行以能效为目标的功率分配。EE-WFAS优化算法可以在认知用户信息传输速率限制条件下保证系统总能效。仿真结果表明:与子载波功率平均分配算法相比
EE-WFAS优化算法的能效提高了约1.2 kbit/J。
A joint optimization algorithm for subcarrier and power with priority of energy efficiency based on a water-filling factor aided search(EE-WFAS)is proposed to solve the problem of traditional spectral efficiency oriented resource allocation in cognitive radio network(CRN)that energy efficiency is in low level. Firstly
the proposed algorithm constructs a constrained optimization problem with maximization of the total energy efficiency of secondary user(SU)as an optimization objective under constraints of SU transmission power control
primary user(PU)interference power control
and limitation of minimum information transfer rate of SU. Then
the optimization problem is solved via subcarrier assignment with priority of energy efficiency and power allocation using WFAS
that is
subcarriers are assigned in accordance with SU channel gain and energy efficiency. Eventually
the optimal power allocation with energy efficiency objective is obtained by a combination of bisection search of the Lagrangian multipliers and the EE-WFAS method. The proposed algorithm guarantees the total energy efficiency under given limitation of information transfer rate of SU. Simulation results and a comparison with the subcarrier and power equal-allocation algorithm show that the proposed algorithm enhances energy efficiency by approximate 1.2 kbit/J.
BUDIARJO I, NIKOOKAR H, LIGHTHART L P. Cognitive radio modulation techniques [J]. IEEE Signal Processing Magazine, 2008, 25(6): 24-34.
ZOU Y, YAO Y D, ZHENG B. Cognitive transmissions with multiple relays in cognitive radio networks [J]. IEEE Transactions on Wireless Communications, 2011, 10(2): 648-659.
ZOU Y, YAO Y D, ZHENG B. Cooperative relay techniques for cognitive radio systems: spectrum sensing and secondary user transmissions [J]. IEEE Communications Magazine, 2012, 50(4): 98-103.
张正浩, 裴昌幸, 陈南, 等. 宽带认知无线电网络分布式协作压缩频谱感知算法 [J]. 西安交通大学学报, 2011, 45(4): 67-71.
ZHANG Zhenghao, PEI Changxing, CHEN Nan, et al. A sensing algorithm based on distributed cooperative compressed spectrum for wideband cognitive radio network [J]. Journal of Xi'an Jiaotong University, 2011, 45(4): 67-71.
LIANG Y C, CHEN K C, LI G Y, et al. Cognitive radio networking and communications: an overview [J]. IEEE Transactions on Vehicular Technology, 2011, 60(7): 3386-3407.
安春燕. 认知无线网络资源管理若干关键技术研究 [D]. 北京: 北京邮电大学, 2013: 20-25.
KARMOKAR A K, NAEEM M, ANPALAGAN A. Energy-efficient subcarrier power allocation for cognitive radio networks using statistical interference model [C]∥Proceedings of 2015 IEEE 26th International Symposium on Personal, Indoor, and Mobile Radio Communications. Piscataway, NJ, USA: IEEE, 2015: 1121-1126.
ZHOU F, BEAULIEU N C, LI Z, et al. Energy-efficient optimal power allocation for fading cognitive radio channel: ergodic capacity, outage capacity and minimum-rate capacity [J]. IEEE Transactions on Wireless Communications, 2015, 15(4): 2741-2755.
LIU X, JIA M, GU X. Joint optimal sensing threshold and subcarrier power allocation in wideband cognitive radio for minimizing interference to primary user [J]. China Communications, 2013, 10(11): 70-80.
陈鹏, 邱乐德, 王宇. 卫星认知无线电检测门限与功率分配联合优化算法 [J]. 西安交通大学学报, 2013, 47(6): 31-36.
CHEN Peng, QIU Lede, WANG Yu. Joint optimization algorithm of detection threshold and power allocation for satellite underlay cognitive radio [J]. Journal of Xi'an Jiaotong University, 2013, 47(6): 31-36.
YANG X, TANG W, GUO W. Efficient joint resource allocation for OFDM-based cooperative cognitive radio networks with rate-guarantee [J]. KSII Transactions on Internet and Information Systems, 2014, 8(9): 3004-3015.
LUO F, YE Y, WU B, et al. Power allocation based on fast water-filling for energy efficient OFDM and MIMO transmissions [C]∥Proceedings of 2012 IEEE Global Communications Conference. Piscataway, NJ, USA: IEEE, 2012: 4758-4763.
MAO J, XIE G, GAO J, et al. Energy efficiency optimization for OFDM-based cognitive radio systems: a water-filling factor aided search method [J]. IEEE Transactions on Wireless Communication, 2013, 12(5): 2366-2375.
DONG L, REN G. Optimal and low complexity algorithm for energy efficient power allocation with sensing error in cognitive radio network [C]∥Proceedings of 2014 the 6th International Conference on Wireless Communications and Signal Processing. Piscataway, NJ, USA: IEEE, 2014: 1-5.
DIGHAM F F, ALOUINI M S, SIMON M K. On the energy detection of unknown signals over fading channels [J]. IEEE Transactions on Communications, 2007, 55(1): 21-24.
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