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LTE_Link_Level_6_r917
- LTE链路级的仿真,非常的全面。考虑了现有LTE的大部分技术。MATLAB仿真,有些功能是用C代码写的。http://www.pudn.com/downloads240/sourcecode/comm/wireless/detail1121790.html 的内容的最新版本。-The LTE Link Level simulator simulator is provided with a test simulation scenario that can be used to verify
MIMO
- MIMO 表示多输入多输出。读/maimo/或/mimo/,通常美国人前者,英国人读后者,国际上研究这一领域的专家较多的都读读/maimo/。通常用于 IEEE 802.11n,但也可以用于其他 802.11 技术。MIMO 有时被称作空间多样,因为它使用多空间通道传送和接收数据。只有站点(移动设备)或接入点(AP)支持 MIMO 时才能部署 MIMO。-Multiple Input Multiple Output MIMO said. Read/maimo/or/mimo /, usually
space
- 完成对发送数据符号的空时编码 实现空间复用和分集增益-Send data to complete the symbol space-time coding and spatial multiplexing diversity gain
sdma
- 仿真了基于智能天线的空间分集(sdma)技术,并用了两种信道的分配方案-Simulation of smart antenna based on spatial diversity (sdma) technology, and the two distribution channels
NetSimu
- 使用临域节点来充当虚拟的MIMO,构成多天线,从而实现空间分集,并且使用了跨层优化的设计理念,将网络层,MAC,和物理层进行了模拟-Use the Pro domain node to act as virtual MIMO, constitutes a multi-antenna in order to achieve spatial diversity, and the use of cross-layer optimization design concepts, the network
for
- 分布式雷达仿真,空间分集性能仿真,空间分集条件仿真-Distributed radar simulation, spatial diversity performance simulation, simulation of spatial diversity Conditions
FE4A65BCd01
- Error Performance of Ultrawideband MIMO Spatial Multiplexing Systems Abstract—Multiple-input multiple-output spatial multiplexing (MIMO-SM) ultrawideband (UWB) systems with orthogonal frequency division multiplexing (OFDM) signaling are devel
EGC
- equal gain combining-spatial diversity
Diversity_SM_MIMO
- Diversity MIMO and Spatial Mutiplexing
Alamouti
- 实现空是分组编码Alamouti,真是一种正交的空时分组码,可实现空间分集增益-Block coding to achieve space is Alamouti, is really an orthogonal space-time block codes, spatial diversity gain can be achieved
egc-mrc
- 三种分集增益,最大比合并,选择合并,等增益合并-equal gain combining-spatial diversity
stbc_4t1r_16qam
- 基于16QAM调制的空时编码,通过仿真可以实现空间分集增益-16QAM modulation-based space-time coding, spatial diversity gain can be achieved through simulation
Ardtool-1.0
- 空时编码的几种天线比较,实现空间的分集增益,-Several antenna space-time coding, spatial diversity gain,
system_s-function(mimo)
- 这是用SIMULINK的S-FUNCTION方式编写的系统仿真代码,系统是基于4G网络的核心技术空时分组编码的MIMO-OFDM通信系统的,涉及到空间分集、时间分集和频率分集的有机结合,包括QPSK调制解调、IFFT调制、控制编解码、基于训练符号的信道估计等通信模块。包括main_STBC_MIMO_OFDM和training_symbol两个M文件和一个DOC文件,对各部分的都有详细的代码和注释。-It is used SIMULINK the S-FUNCTION approach to t
135-05963454
- IEEE 2011 paper on Transmit–Diversity for Spatial Modulation (SM): Towards the Design of High–Rate Spatially–Modulated Space–Time Block Codes
stbcall.m
- tgrr yggg ggg yttt Space time block coding (STBC) and beamforming techniques are two emerging technologies that can be employed at base station with multiple antenna to provide transmit diversity and beamforming gain to increase signal-to-
alamouti2x1
- we present a new space–time block code for timeand frequency-selective (doubly-selective) channels. It can be interpreted as the extension of the Alamouti code to doubly-selective channels, and relies on a joint time–frequency reversal of the trans
simulate
- Orthogonal STBC [4], [5] has been designed to achieve the spatial diversity offered by multiple transmit and/or receive antennas. The STBC schemes proposed in [4] and [5] are designed for flat-fading channels, which lead to a performance degradat
Neural-Network--channel-Estimation
- the effects of neural network aided estimation in such receivers are considered. Neural network acts as a pre-processing block to the estimator.-Orthogonal frequency division multiplexing (OFDM) has high data rate capacity and lower Inter Symbo
TELE - 753 Wireless Communications
- This course provides advanced knowledge of wideband wireless communication techniques. It include the areas of diversity: Time diversity, Space diversity, Frequency TELE9753 Advanced Wireless Communications 2 diversity; Wideband CDMA systems, Wide