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MIMO系统容量仿真程序分为两个。其中
文件夹1为:发射天线数为4,接收天线数逐渐增大时MIMO系统容量的仿真程序。
文件夹2为:接收天线数为4,发射天线数逐渐增大时MIMO系统容量的仿真程序。-MIMO system capacity simulation program is divided into two. One folder 1 as follows: the number of transmitting antennas is 4, gradually increasing
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窄带平衰落相关MIMO信道容量仿真,内容包括:天线间距、功率角度谱、多簇、总角扩展等参数对信道容量及相关系数的影响-Narrowband flat fading MIMO channel capacity related to simulation, including: antenna spacing, angle power spectrum, multi-cluster parameters such as total angular expansion of channel capaci
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一个mimo天线阵列的m文件,有助于加深对mimo天线排布方案的理解,对学习mimo系统有一定的帮助。-A mimo antenna array of m files, enhance the scheme for mimo arrangement, antennas for learning mimo systems have some help.
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用matlab进行发送天线为2根,接收天线为1根的mimo信道空时分组码的性能仿真。-Using matlab to send antenna 2 and receiving antennas to one of mimo space-time block codes channel performance simulation.
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任意发送天线_任意接收天线的STBC-MIMO-OFDM的MATLAB程序-Arbitrary transmitting antenna _ arbitrary STBC-MIMO-OFDM the MATLAB program receiving antenna
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Matlab平台下仿真实现2*2, 4*4, 6*6天线Alamouti空时编码的MIMO系统,画出不同信噪比下的性能曲线对比。-2* 2, 4* 4, 6* 6 antenna Alamouti space-time coding MIMO system Matlab simulation platform, draw the comparison of different signal-to-noise ratio performance curve.
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基于matlab的OFDM仿真程序,源代码,分析等-This paper presents a simple two-branch transmit
diversity scheme. Using two transmit antennas and one
receive antenna the scheme provides the same diversity order
as maximal-ratio receiver combining (MRRC) with one tr
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基于MATLAB的扩展2bit的多天线MIMO系统的误码率曲线,可以直接运行-With multi-antenna MIMO feedback
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关于MIMO天线的matlab仿真,有代码和仿真结果图-Matlab simulation on MIMO antenna with code and the simulation results
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MIMO Rf wireless, this is matlab simulation.
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Optimization Techniques for MIMO radar
antenna systems and genetic
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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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% 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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