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MsgDetail
- 七号信令解码器,N多人多年心血,奉献给需要的人,有问题请email:leafboyman@tom.com
winner2
- 欧洲winner2的官方3D天线信道模型源程序 内包含十多种场景选择 考虑了角度扩展 k参数等-H=WIM(WIMPAR,LINKPAR,ANTPAR) is a 5D-array of channel coefficients. For explanation of the input parameter structs, see WIMPARSET, LAYOUT2LINK, LAYOUTPARSET, and ANTPARSET. H is a cell array
mimo_sim
- MIMO 系统仿真,对时变信道的自适应调制-erq.m : function for ERQ algorithm in MIMO systems space_wf.m : function for spatial domain power waterfilling st_wf.m : function for spatial and temporal domain waterfilling MIMO_rate.m : Plot spectral efficiency vs SNR f
mds
- This codes include MDS code for communication and other uses. Multidimensional scaling (MDS) is a set of related statistical techniques often used in formation visualization for exploring similarities or dissimilarities in data. MDS is a special
www
- 瑞丽信道仿真 噪声信号由MATLAB函数randn(1,N)产生,它从均值为0、方差为1的正态分布中产生N个伪随机数。每次迭代时,要使用相应的标准差对噪声的幅度进行尺度变换,最后,将输入信号和噪声信号相加得到输出信号。-Ruili channel simulation noise signal by the MATLAB function randn (1, N) generated, which from the mean 0, variance for a normal distribu
yalmip
- matlab用于求解规划问题的工具包 推荐把这个工具整合到matlab中去,这个工具是私人的,不过大家都可以免费下载使用。下载后,只要在matlab中添加路径就可以使用这工具箱。 正在吸引我的是,这个工具箱建立了一种新的数据类型,使所有规划问题都整合在一起。 举例如下: 已知非线性整数规划为: Max z=x1^2+x2^2+3*x3^2+4*x4^2+2*x5^2-8*x1-2*x2-3*x3-x4-2*x5 s.t. 0<=xi<
Untitled2
- 降低OFDM峰均比限幅方法CCDF曲线比较仿真程序。主要仿真参数为:子载波N=128,各支路采用16QAM调制,限幅率CR=1.4,仿真的OFDM符号数Nsymbol=10000。-Reduce the OFDM PAPR limiting method of CR = 1.4 CCDF curve simulation program. The main simulation parameters are: N = 128 sub-carriers, each branch with 16QA
buffer-only
- We use simulation results to show the performance of the water filling algorithm. Simplify this question into a OFDM based communication network with one transmitter and one receiver. It is assumed that the total power of Pmax = 1 w and the total ban
DFT_S_OFDM_lyl
- LTE上行链路使用的DFT-S-OFDM系统的仿真,其中包括QPSK星座映射、串并转换、N点DFT、子载波映射等。-LTE uplink using the DFT-S-OFDM system simulation, including QPSK constellation mapping, string and conversion, N-point DFT, subcarrier mapping, etc..
PdfEstimation
- 已知观测数据为A+W(n),其中A为直流信号,W为复高斯噪声,服从CN(0, ),在统计N次下,计算X的统计平均值 ,求T(x)= 的pdf:p(T(x)|H0)、p(T(x)|H1)。 H0: W H1: A+W -Known observation data A+W (n), where A is the DC signal, W is the complex Gaussian noise, subject CN (0,), N times in the statistics,
How-to-get-SNR-in-cognitive-radio
- monte carlo simulation. to run the above simulation input" [y1,y2,y3,y4]= ed(0,1,25,2) " in command window. the "g" in the code above represents the normalisation i.e it represents variance(signal)/variance (noise) as SNR= power(signal)/power(n
zhao_srsk_honig
- users and link gains generation FIXED POWER FOR EACH SU LINK NO POWER CONTROL FOR SUs WITH ON OFF activity for PUs and SUs d_00=start of franhaufer zone d_0=radius of cell, d_su=radius of pairwise adhoc N/W - users and link gains genera
mfashengqi
- 利用MATLAB开发一个N=5的M序列发生器的仿真程序,其本原多项式为g(x)=1+x^2+x^5.-Use MATLAB to develop a N = 5 M-sequence generator simulation program, its primitive polynomial g (x) = 1+x ^ 2+x ^ 5.
YINPIN12.RAR
- 实验前自己用Cool Edit音频编辑软件录制声音“我到北京去”,并把它保存为.txt文件。 编程实现不同矩形窗长N=50、100、200、800的短时平均能量。 用Matlab画出不同窗长的短时平均能量的图形。 -Before the experiment they used Cool Edit audio editing software, record sound, "I go to Beijing," and save it as a. Txt file.
Untitled3
- 令信号长度为N=256,试分别用BT法和周期法估计产u(n)功率谱-So that the signal of length N = 256, respectively, the estimated production test u (n) the power spectrum with BT and Cycle Methods
Untitled5
- 令信号长度为N=256,用Levinson-Durbin迭代法解16阶AR模型的功率谱,程度可用-So that the signal of length N = 256, 16-step solution of the power spectrum of the AR model using Levinson-Durbin iterative method, the extent of the available
bd_v312_setup
- 中的公式编写,并经过多次实例验证,与理论描述相符。文件包括两个m文件,一个是按模n展开,而另一个是逆变换,即按模n叠合。--unfolding of the tensor mode is a basic technology, there are a variety of code to make different result. However this code is written by referring to the authority of the tensor field of
CDMA_GMSK_Sim
- 基于CDMA扩频通信技术的仿真,采用的调制方法是GMSK调制,模拟信道噪声,输出信噪比,说明CDMA扩频通信的抗噪性- 58/5000 Jīyú CDMA kuò pín tōngxìn jìshù de fǎngzhēn, cǎiyòng de tiáozhì fāngfǎ shì GMSK tiáozhì, mónǐ xìndào zàoshēng, shūchū xìn zào bǐ, shuōmíng CDMA kuò pín tōngxìn de kàng zào xìng
