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mimo的天线选择算法,可以作为这方面学习的参考,-MIMO antenna selection algorithm can be used as reference for learning in this area,
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在MIMO 2x1天线选择系统中,利用Alamouti编码,计算系统的BER-In the 2x1 antenna selection, the use of Alamouti coding, computing system BER
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本书从信息论与错误概率的角度,着重分析了真实世界传播如何影响MIMO容量和性能,实际鲁棒的空时码的设计,详细讨论了预编码、天线选择和多载波传输。-Book from the perspective of information theory and error probability, focused on analysis of real-world communication can affect MIMO capacity and performance, the actual robus
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关于MIMO中编码技术及天线选择的相关问题的研究-Issues related to coding and antenna selection in MIMO systems
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无线通信中MIMO系统中的天线选择技术编程-Antenna selection technique in wireless communication in a MIMO system programming
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无线与移动通信中MIMO-OFDM系统2*1天线选择的matlab仿真与实现-Matlab simulation and implementation of MIMO-OFDM System 2* 1 antenna selection in wireless communication and mobile
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Transmit antenna subset selection in MIMO OFDM system using adaptive mutation Genetic algorithm
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基于simulink的天线选择技术仿真建模。天线选择技术的MIMO技术中的相关基础技术,在当前无线通信中起着重要做用,通过仿真可以很好的展现天线选择的优势。-Antenna selection techniques based on simulink simulation modeling.Antenna selection techniques of MIMO technology in the related basic technology, in the current wireless
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precoding and antenna selection
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大规模系统中的天线选择算法的MATLAB仿真程序(MATLAB simulation program of antenna selection algorithm in large scale system)
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MIMO系统中采用最优天线选择方案的MIMO信道容量(MIMO channel capacity using optimal antenna selection scheme in MIMO system)
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MIMO天线选择算法中,基于最优选择算法和范数选择算法和随机选择算法的程序,能够简化硬件结构,降低通信算法的复杂度,提高通信的可靠性。穷举法,递减,递增等。(In MIMO antenna selection algorithm, the program based on optimal selection algorithm and norm selection algorithm and random selection algorithm can simplify the hardware
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solve a joint antenna selection and analog beamformer problem(jointly design the antenna selection and analog beamformer with low-resolution phase shifters in mmwave MIMO systems)
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% Type of different detectors, parameters for Detector.m
ML = 1; % Joint ML Detector
JMMSE = 2; % Joint MMSE Detector
ZF = 3; % Joint Zero-Forcing Detector
% Type of different antenna selection criteria methods
MBER = 1;
MMI = 2;
LAZY = 3;
MNP = 4
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