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ofdm+matlab
- OFDM:正交频分复用(OFDM)是第四代移动通信的核心技术。该文首先简要介绍了OFDM基本原理,重点研究了理想同步情 况下,保护时隙(cP)和不同的信道估计方法在高斯信道和多径瑞利衰落信道下对OFDM系统性能的影响。在给出OFDM系 统模型的基础上,用MATLAB语言实现了整个系统的计算机仿真并给出参考设计程序-OFDM : Orthogonal Frequency Division Multiplexing (OFDM) is the fourth-generation mobile
OFDMcode.rar
- 完整的OFDM链路程序并作了较为具体的解析从基本的bpsk,qpsk,qam到实际的ofdm系统,cdma链路,mac层仿真分析.,Orthogonal frequency division multiplexing (OFDM) is becoming the chosen modulation technique for wireless communications. OFDM can provide large data rates with sufficient robustnes
MB-OFDM
- 多带正交频分复用超宽带系统的仿真,希望对您有用@!-Multi-band orthogonal frequency division multiplexing ultra-wideband system simulation, hope useful to you @!
Q_DSSS
- 直扩码分多址DS-CDMA是利用高速的WALSH正交码序列作为地址码,与多用户信息数据相乘得到信息数据的直接扩频信号,再经过BPSK调制后发送出去,经过AWGN无线信道的传输后,在接收端与本地产生的地址码进行相关检测,从中将地址码与本地码一致的用户数据选出,把不一致的用户数据删除。-DS-CDMA DS-CDMA is the use of high-speed WALSH orthogonal code sequences as address code, with multi-user in
orthogonal_signal_BER
- 以cos(2*pi*k*t/N)信号空间,k=0,1,……N-1, 取N= 4,8,16,32,64等基信号作为传输信号,通过计算机仿真正交信号的误码率。-To cos (2* pi* k* t/N) signal space, k = 0,1, ... ... N-1, take N = 4,8,16,32,64, such as the base signal as a transmission signal, through computer simulation orthogonal s
walsh
- These are orthogonal complimentary code version of walsh codes which are or to be used in cdma systems.-These are orthogonal complimentary code version of walsh codes which are or to be used in cdma systems.
STBC4C
- 4发射天线1接收天线在QPSK调制下的正交空时编码-4 transmission antennas in a receiving antenna orthogonal QPSK modulation space-time coding
quasiorthogonalspacetimeblockcods
- 主要介绍了准正交空时分组码,包括ABBA,jafarkhani-Introduced quasi-orthogonal space-time block codes, including ABBA, jafarkhani
agilent_wimax_ofdm
- AGILENT关于OFDMA设计的难得的参考资料-This application note is a guide to effective measurement and troubleshooting of IEEE 802.16e OFDMA “Mobile WiMAX” signals, components, and systems. The most distinctive term used to describe this new technology i
MATLAB--OFDM
- MATLAB实现基于无线宽带系统的正交频分复用(OFDM)的链路级和系统级仿真-MATLAB realization of wireless broadband systems based on orthogonal frequency division multiplexing (OFDM) link level and system-level simulation
bssalgorithm
- 自己编写的,盲源分离算法仿真分析系统(图形界面)又名:独立分量分析;算法种类:自然梯度算法、投影自然梯度算法、FastICA、SOBI、NJD非正交联合对角化。信号种类: MASK:2ASK,4ASK,8ASK MPSK:2PSK、4PSK、8PSK MFSK:2FSK、4FSK、8FSK 分连续相位CPFSK和离散相位DPFSK两种 MQAM:16QAM、32QAM、64QAM、128QAM OFDM:子载波数可任意选定,映射方式有BPSK、QPSK、4QAM、16QAM、
ofdm_EM_channel
- 分析了相位噪声对正交频分复用(OFDM)系统的影响,发现相位噪声不仅产生 通用相角错误(CPE),而且还会产生载波间干扰(ICI),这都使OFDM系统的性能急剧恶 化,因此必须对CPE和ICI进行校正.文中给出了基于MSE准则的CPE校正方法,考虑到 ICI干扰主要来源于相邻信道,进而提出了基于LMS法则的自适应相邻信道干扰消除方 法.整个算法简单高效.仿真结果表明,所提出的算法大大改善了OFDM系统的性能-Analysis of phase noise on the ortho
spanc_me
- Performance Analysis of Non-Orthogonal CDMA with options for Minimum Entropy initialization
OFDM-MATLAB--simulate-
- OFDM系统通过将高速数据流变成在多个载波并行传输的低速数据流,各子载波之间的正交性及保护间隔的引入,增强了OFDM系统的抗多径衰落等性能,是第四代移动通信技术标准的参考技术之一。本代码是基于IFFT和FFT算法的OFDM系统可以在matlab环境下进行很好的模拟仿真,并进行系统的性能分析-an Orthogonal Frequency Division Multiplexing code of Matlab
UFMC_OFDM-matlab
- 5G非正交多载波机制UFMC收发机matlab代码实现,非常新,给5G通信专业研发人员提供帮助-5G non-orthogonal multi-carrier mechanism UFMC transceiver matlab code, very new, to 5G communications professional R & D personnel to help
OFDM
- OFDM(正交频分复用)Matlab代码和仿真(OFDM(Orthogonal frequency-division multiplexing) Matlab code and simulation)
dsbqg
- Matching Pursuit and orthogonal matching pursuit, Least-squares algorithm to fit a three-dimensional plane, Genetic algorithms using MATLAB path planning.
新技术-扩频-跳频-OFDM-MATLAB仿真程序
- 主要包括扩频、多元扩频、跳频、正交多载波调制OFDM系统的MATLAB仿真(Including MATLAB simulation, spread spectrum and frequency hopping spread spectrum multiple orthogonal multi carrier modulation OFDM system)
OFDM-MATLAB-仿真
- 一个正交频分复用通信系统的仿真程序;ofdm系统;仿真(A simulation program for orthogonal frequency division multiplexing communication system)
OFDM-Framework-LabVIEW-master
- 于正交频分复用(OFDM)存在由带外辐射过高、峰均比(PAPR)过大等缺点,面向第5代移动通信(5G)的第3代合作伙伴计划(3GPP)的新无线空口(NR)标准,各大通信厂商都提出了包括滤波正交频分复用(Filtered-OFDM)、加窗OFDM、滤波器组OFDM(FB-OFDM)等新波形技术。考虑到5G更高的通信速率及带宽需求,并需适用于6 GHz以,上的高频通信(尤其是毫米波频段) ,5G候选波形需要更高的时频效率和更优的带外辐射特性,以满足5G通信的要求"。(Due to the