莱斯信道下多小区大规模MIMO系统上行资源分配
Uplink Resource Allocation for Multicell Massive MIMO Systems in Rician Fading Channels
DOI: 10.12677/JA.2017.63005, PDF, HTML, XML, 下载: 1,628  浏览: 3,610  国家自然科学基金支持
作者: 郝运, 岳殿武:大连海事大学信息科学技术学院,辽宁 大连
关键词: 大规模MIMO最大比合并信道估计功率分配能量效率Massive MIMO Maximum Ratio Combining Channel Estimation Power Allocation Energy Efficiency
摘要: 针对莱斯信道下多小区上行多用户大规模MIMO系统,对上行链路的资源进行分配。采用最大比合并接收方式,联合优化导频信号长度,导频信号与数据信号的发射功率,以使系统频谱效率最大化。仿真结果表明,在莱斯因子较小时,通过资源分配可以显著提高系统的速率性能;但随着莱斯因子的增加,优化功率分配所带来的性能增益则减小。
Abstract: This paper is concerned with the uplink resource allocation for multicell massive MIMO systems in Rician fading channels. With the receive processing of maximum ratio combining, it investigates an optimal resource allocation scheme which jointly selects the training duration, the training signal power and the data signal power in order to maximize the system spectral efficiency. Simulation results show that the rate performance can be improved significantly when the Rician factor is relatively small. However, the performance gain from optimal power allocation becomes smaller and smaller as the Rician factor goes large. 
文章引用:郝运, 岳殿武. 莱斯信道下多小区大规模MIMO系统上行资源分配[J]. 天线学报, 2017, 6(3): 33-41. https://doi.org/10.12677/JA.2017.63005

参考文献

[1] Marzetta, T.L. (2010) Noncooperative Cellular Wireless with Unlimited Numbers of BS Antennas. IEEE Transactions on Wireless Communications, 9, 3590-3600.
https://doi.org/10.1109/TWC.2010.092810.091092
[2] Rusek, F., Persson, D. and Lau, B.K. (2013) Scalingup MIMO: Opportunities and Challenges with Very Large Arrays. IEEE Signal Processing Magazine, 30, 40-60.
https://doi.org/10.1109/MSP.2011.2178495
[3] Larsson, E.G., Tufvesson, F., Edfors, O., et a1. (2014) Massive MIMO for Next Generation Wireless Systems. IEEE Communications Magazine, 52, 186-195.
https://doi.org/10.1109/MCOM.2014.6736761
[4] Björnson, E., Sanguinetti, L., Hoydis, J., et a1. (2015) Optimal Design of Energy-Efficient Multi-User MIMO Systems: Is Massive MIMO the Answer? IEEE Transactions on Wireless Communications, 14, 3059-3075.
https://doi.org/10.1109/TWC.2015.2400437
[5] Zhang, Q., Jin, S., Huang, Y. and Zhu, H. (2014) Uplink Rate Analysis of Multicell Massive MIMO System in Rician Fading. IEEE Global Communications Conference, (GLOBECOM), Austin, 8-12 December 2014, 3279-3284.
[6] Hassibi, B. and Hochwald, B.M. (2003) How Much Training Is Needed in Multiple-Antenna Wireless Links? IEEE Transactions on Information Theory, 49, 951-963.
https://doi.org/10.1109/TIT.2003.809594
[7] Ngo, H.Q., Matthaiou, M. and Larsson, E.G. (2014) Massive MIMO with Optimal Power and Training Duration Allocation. IEEE Wireless Communications Letters, 3, 605-608.
https://doi.org/10.1109/LWC.2014.2359220
[8] 陶成, 李亚鹏, 刘留, 李泳志. 莱斯信道下大规模MIMO系统上行资源分配研究[J]. 北京交通大学学报, 2016, 40(5): 51-56.
[9] Ngo, H.Q., Larsson, E.G. and Marzetta, T.L. (2013) The Multicell Multiuser MIMO Uplink with Very Large Antenna Arrays and a Finite-Dimensional Channel. IEEE Transactions on Communications, 61, 2350-2361.
https://doi.org/10.1109/TCOMM.2013.032713.120408
[10] Yue, D.-W., Zhang, Y. and Jia, Y.-N. (2015) Beamforming Based on Specular Component for Massive MIMO Systems in Ricean Fading. IEEE Wireless Communications Letters, 4, 197-200.
https://doi.org/10.1109/LWC.2015.2396071