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Bernoulli
- Example of a digital data transmission implementing GMSK modulation This Simulink model simulates as an example the transmission and reception of random digital data modulated with GMSK. The purpose of this model is to illustrate how part of the GS
Simulink_pseudo-random_binary_sequence_generators.
- Simulink pseudo-random binary sequence generator
daimahekuangtu
- ,用MATLAB实现快跳频通信系统的仿真。主要应用了SIMULINK和COMMUNICATION BLOCKETS两个模块。整个设计包括了信源产生部分、发送部分、跳频调制部分、信道部分、接收部分和结果分析部分共六个模块,核心技术是伪随机序列的产生和频率合成器的设计,而关键技术是收发两端的伪随机码元的同步。伪随机码的产生用S-函数编程来开发自己的SIMULINK模块。同步的实现是收发两端采用相同的扩频脉冲触发。而且在设计中每个模块都采用了模块封装技术,从而简化了框图结构-Using MATLAB
QAM_modu
- matlab下的simulink下实现16QAM调制解调,采用随机信号发生器,包括成形滤波和匹配滤波及信号星座图还原-simulink of matlab under the 16QAM modulation and demodulation implementation, using a random signal generator, including the shaping filter and matched filter and the signal constellation di
Bernoulli
- This Simulink model simulates as an example the transmission and reception of random digital data modulated with GMSK. The purpose of this model is to illustrate how part of the GSM transmission and reception works. It also measures the BER, affected
Distributed_Multimedia_Networks
- MATLAB程序,TCP流路由,丢包率计算,包括脚本和simulink模块。-runde2.m (Matlab driver s program for activating 40 TCP flows with an AQM router) vdpol2.m (Matlab function for setting up stochastic differential equations for runde2.m) runde3.m (Matlab driver s program to
spread1_6
- simulink做的BPSK的调制与解调,信号源是随机信号与PN码扩频调制,最后结果与随机信号比较一致-simulink do BPSK modulation and demodulation, the signal source is a random signal with the PN code spread-spectrum modulation, the final result more consistent with the random signal
M
- 本文件包含了M文件以及simulink产生伪随机码-This document contains M documents and generate pseudo-random code simulink
21345add
- 这个Simulink模型实现一个使用GMSK调制的随机数字数据的发射和接收。同时测量AWGN信道对BER的影响。-The Simulink model uses GMSK modulation to achieve a random digital data transmission and reception. AWGN channel simultaneous measurement of the impact on the BER.
DSSS
- (1) 产生数值为±1的用户随机数据;给出Matlab下对应的模块; (2) 产生并给出64×64的Walsh矩阵,作为用户接入的扩频码; (3) 利用上述一个用户的扩频码和用户数据演示扩频过程;给出Simulink工作框图; (4) 利用FFT,计算并画出基带数据和扩频信号的频谱(在一个图中给出); -(1) value of ± 1 generated random data users given under the corresponding Matlab module
function4
- Simulate the Tracker s Rotational Vibration Rotational vibration of the tracker is simulated using model aero_vibrati. The data required to simulate the vibration of the tracker is generated by running the Simulink model "aero_vibrati". Ru
function2
- Generating an Optical Sensor Image From Simulated Movement Data This scr ipt (aero_pointer_tracker.m) generates a movie with 64 frames and a frame size of 64 by 64 pixels (at 10 frames per second). The movie contains a simulation of a moving t
M_simulink
- M文件以及simulink产生伪随机码,是M序列,可在扩频通信中应用。-M files and simulink pseudo random code, is the M series, available in the spread spectrum communication applications.
power_wind_dfig
- 随机风速下并网型双馈风力发电机simulink模型-Random wind speed and grid simulink model of doubly fed wind power generator
RACH_Multiplexing_essay
- Random access Channel simulation with Matlab/simulink
Pseudo-random-sequence-generator
- 通过MATLAB的SIMULINK模型设计,实现伪随机数的序列发生器,并通过DSP BUILDER中的SIGNAL COMPILER转换成QuartusII工程,并实现硬件的下载。-Through the MATLAB SIMULINK model design, realization of pseudo random sequence generator, and through the DSP BUILDER of SIGNAL COMPILER converted into Quartu
cdma-simulink
- cdma是在数字技术的分支——扩频通信技术上发展起来的一种崭新而成熟的无线通信技术。即将需传送的具有一定信号带宽信息数据,用一个带宽远大于信号带宽的高速伪随机码进行调制,使原数据信号的带宽被扩展,再经载波调制并发送出去。接收端使用完全相同的伪随机码,与接收的带宽信号作相关处理,把宽带信号换成原信息数据的窄带信号即解扩,以实现信息通信。-cdma wireless communication technology in a new and sophisticated digital technol
MATLAB-simulink-communication(up)
- MATLAB通信基础,SIMULINK仿真基础、离散信号随机信号、低通带通、高斯白噪声信道、多径衰落信道、幅度调制、角度调制、正交信号传输特性、二进制基带信号的最佳接收等。-Communication based on MATLAB and SIMULINK simulation, random signal, discrete signal to a low-pass bandpass, white gaussian noise channel, multipath fading channe
suijifeng
- 基于simulink的随机风速模型,可以自己更改参数得到不同风速。(simulink random wind model)
随机场程序
- 创建随机场仿真模拟,通过具体算例的程序创建随机场(random field creation)