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[Communication-MobileMIMO-OFDM

Description: 《MIMO-OFDM关键技术的研究和完整仿真平台的建立》,建立了一个完整的MIMO-OFDM的仿真平台,为实际的硬件平台提供解决方案,给出性能评估。为建立这个完整的仿真平台,本文从MIMO-OFDM信号模型,提出系统实现的各个关键技术:帧同步和载波频偏估计、信道估计、采样同步和载波跟踪、空时/频编解码。- MIMO-OFDM key technology research and the establishment of a complete simulation platform , the establishment of a complete MIMO-OFDM simulation platform, for the actual hardware platform to provide solutions, given performance evaluation. For the establishment of the integrity of the simulation platform, this article from the MIMO-OFDM signal model, the system in all key technologies: frame synchronization and carrier frequency offset estimation, channel estimation, sampling synchronization and carrier tracking, space-time/frequency codecs.
Platform: | Size: 2463744 | Author: 李继龙 | Hits:

[matlabMIMO

Description: MIMO空时信道模型建模源程序的matlab程序-MIMO space-time channel model in matlab source modeling procedures
Platform: | Size: 60416 | Author: qiankun | Hits:

[Communication-Mobilechannelestimation

Description: OFDM系统中以PN序列作为循环前缀和传统梳状导频信道估计方法对比-OFDM system with PN sequence as a cyclic prefix and traditional comb pilot channel estimation methods
Platform: | Size: 8192 | Author: 王寿珍 | Hits:

[Post-TeleCom sofeware systemsMIMOOFDMchannelestimationofdifferentcontrast

Description: 本代码是基于MIMO-OFDM系统下做的信道估计技术的研究。MIMO,OFDM是4G的核心技术,两者相结合的估计算法也是现在研究的热点。本代码包括几种核心的估计算法并可直接仿真出结果。-The code is based on MIMO-OFDM system channel estimation to do research. MIMO, OFDM is the core of 4G technology, a combination of both the estimation algorithm is now a hot research. The code includes several core estimation algorithm and simulation results directly.
Platform: | Size: 2048 | Author: 赵琪 | Hits:

[Software Engineering11-06-0979-00-0wng-mimo-ofdm-beamforming

Description: MIMO-OFDM Beamforming for Improved Channel Estimation in 802.11n WLAN
Platform: | Size: 101376 | Author: bailixia | Hits:

[Windows Developtxz

Description: 基于导频的传统的OFDM系统的信道估计源程序 [scme-2006-08-30.zip] - 3gpp信道模型代码,加入mimo,-Based on the traditional pilot channel estimation in OFDM system, source [scme-2006-08-30.zip]- 3gpp channel model code, adding mimo,
Platform: | Size: 659456 | Author: 哈哈哈 | Hits:

[Communication-Mobilemimomse

Description: A matlab program for Channel estimation for MIMO OFDM with ls estimator
Platform: | Size: 2048 | Author: kalapraveen | Hits:

[Windows DevelopMIMOOFDMdetectionandestimation

Description: MIMO-OFDM系统中信道估计和多用户相结合的程序-channel estimation and multiuser=detection in MIMO-OFDM system
Platform: | Size: 38912 | Author: lhhmz | Hits:

[Program docIEEE80211n_Channel_Estimation

Description: 本文主要研究了基于802.1ln协议的MIMO.OFDM信道估计的研究。首先给出了MIMO。OFDM的信道模型。在此基础上导出了在慢衰落信道下的基于块状导频的LS信道估计算法。-This paper mainly based on 802.1ln agreement MIMO-OFDM Channel Estimation. Firstly, MIMO. OFDM channel model. On this basis, derived in the slow fading channel block-based pilot of the LS channel estimation algorithm.
Platform: | Size: 1514496 | Author: 余伟 | Hits:

[Software EngineeringMIMO-OFDM

Description: 这是一个基于空时分组编码的MIMO_OFDM通信系统的仿真设计,此系统包括QPSK调制解调,IFFT调制,空时编解码,基于训 练符号的信道估计等通信模块。 -This is a space-time block coding based on the MIMO_OFDM communication system simulation design, this system consists of QPSK modulation and demodulation, IFFT modulation, space-time coding and decoding, symbol-based channel estimation training and other communication module.
Platform: | Size: 4096 | Author: 邓昌文 | Hits:

[matlabMIMO-OFDM

Description: 在awagn噪声下实现lms信道估计算法,以及我的算法改进。-Lms in awagn noise to achieve channel estimation algorithm, as well as improving my algorithm.
Platform: | Size: 18432 | Author: 胡廷星 | Hits:

[Program docCHANNEL-ESTIMATION-IN-OFDM-SYSTEMS

Description: It the document on pdf having the channel estimation in mimo ofdm systems.describing all MIMO,OFDM,Channel estimation
Platform: | Size: 1202176 | Author: surya | Hits:

[Communication-Mobile12

Description: 为了抑制多用户MIMO-OFDM系统的共道干扰,采用MMSE干扰抑制和符号估计相结合的检测方案,该检测方案接收端译码简单.理论分析及仿真结果表明,与传统检测方案相比,该检测方案在没有增加计算复杂度的情况下有效地抑制并消除了共道用户干扰.-In order to restrain the interference of co-channel users in MIMO-OFDM system,in this paper,adopted the combination of the detection scheme about the linear MMSE interference suppression and symbol estimation,and the receiver maintained decoding simplicity.Theory analysis and simulation results reveal that the proposed scheme can suppress and cancel the interference from co-channel users effectively without increasing the complexity significantly.
Platform: | Size: 200704 | Author: 王睿 | Hits:

[Program doc65038717eqberdemo

Description: block type channel estimation in mimo-ofdm
Platform: | Size: 103424 | Author: hems | Hits:

[Software EngineeringfrequencyPdomainPforPMIMO-OFDM

Description: mimo-ofdm系统中信道容量估计的分析和仿真,很详细-Analysis and Simulation of channel capacity estimation in MIMO-OFDM system, a very detailed
Platform: | Size: 355328 | Author: 杨旭 | Hits:

[Program docisbn9789514262203

Description: ITERATIVE DETECTION, DECODING, AND CHANNEL ESTIMATION IN MIMO-OFDM.
Platform: | Size: 2894848 | Author: p-sr | Hits:

[matlabLE

Description: hey please check these matlab coding and get idea of channel estimation in mimo ofdm.
Platform: | Size: 1024 | Author: tuanvo | Hits:

[Program docChannel-Estimation-for-DBLAST-OFDM-Systems

Description: Abstract—Diagonal Bell Laboratories Layered Space-Time (DBLAST) structure offers a low complexity solution to realize the attractive capacity of Multiple-input and multiple-output (MIMO) systems. In this paper, we apply D-BLAST in orthogonal frequency division multiplexing (OFDM) systems and address the issue of channel estimation. Different other MIMO-OFDM, where symbols at all tones are always available for decision-directed channel estimation, in D-BLAST OFDM, we update estimated channel parameters each time a layer is detected with a least square (LS) approach, using a pieced combination of received signals at previous and current OFDM blocks. The initial estimate is further refined by a robust estimator to exploit the time correlation of channel parameters among OFDM blocks. Computer simulation results show the performance improvement over block-wise channel estimation. It is also shown that D-BLAST with proposed channel estimation is robust to fast fading of channel parameters.-Abstract—Diagonal Bell Laboratories Layered Space-Time (DBLAST) structure offers a low complexity solution to realize the attractive capacity of Multiple-input and multiple-output (MIMO) systems. In this paper, we apply D-BLAST in orthogonal frequency division multiplexing (OFDM) systems and address the issue of channel estimation. Different other MIMO-OFDM, where symbols at all tones are always available for decision-directed channel estimation, in D-BLAST OFDM, we update estimated channel parameters each time a layer is detected with a least square (LS) approach, using a pieced combination of received signals at previous and current OFDM blocks. The initial estimate is further refined by a robust estimator to exploit the time correlation of channel parameters among OFDM blocks. Computer simulation results show the performance improvement over block-wise channel estimation. It is also shown that D-BLAST with proposed channel estimation is robust to fast fading of channel parameters.
Platform: | Size: 80896 | Author: werad | Hits:

[Software EngineeringAn-Adaptive-Channel-Estimation

Description: 文章介绍了自适应均衡技术在MIMO OFDM系统中的应用研究。-In this paper, an adaptive channel estimation for MIMO OFDM is proposed. A set of pilot tones first are placed in each OFDM block, then the channel frequency response of these pilot tones are adaptively estimated by recursive least squares (RLS) directly in frequency domain not in time domain. Then
Platform: | Size: 419840 | Author: 王峰 | Hits:

[Other新型大规模MIMO OFDM信道估计方法的研究

Description: 本篇论文研究的 FDD 模式下的 Massive MIMO OFDM 系统的信道估计方法,通过分析 MIMO OFDM 系统存在的空时共同稀疏性,应用结构化理论处理 Massive MIMO 信道。为了 减少导频的消耗,提出适合的估计方法(In this paper, the channel estimation method of Massive MIMO OFDM system in FDD mode is studied Space-time common sparsity in MIMO OFDM system is applied to deal with Massive MIMO channel.In order to Reduce the pilot frequency consumption and put forward a suitable estimation method)
Platform: | Size: 1187840 | Author: legend27 | Hits:
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