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rectangle_pulses_ambig.rar
- 矩形脉冲串信号的模糊函数matlab代码,Rectangular pulse function of the fuzzy matlab code
MPSKMQAMmudulation.rar
- 本程序用于完成BPSK、QPSK、pi/4QPSK、OQPSK、8PSK、16QAM、32QAM、64QAM和128QAM的调制仿真。并可任意扩展到MPSK和MQAM。程序分成四个部分,fir.m对基带码元序列进行脉冲成型,可选矩形脉冲,升余弦脉冲和平方根升余弦脉冲; modal.m 为主程序,完成岁各种信号的基带星座图映射、脉冲成型和调制;pi4QPSK.m 为pi/4QPSK信号的星座图映射程序;test1.m给出一个简单的频谱显示测试。,This procedure for the com
AmbiguityFunction
- 建立并绘制任意信号的模糊函数。已在巴克码,线性调频,脉冲信号中测试过。-This program estimates and plots the ambiguity function for any signals. I have tested it for the Barker code, chirp signal, pulse signal. for good results the length of the input vector (Ut)should be more than 7.
signal_ambiguity_function
- 这个源码可以分析绘制多种信号的模糊函数,已经试验过巴克码,线性调频信号,脉冲信号等-Descr iption: This program estimates and plots the ambiguity function for any signals. I have tested it for the Barker code, chirp signal, pulse signal. for good results the length of the input vector (Ut)sho
single_rectangle_pulse_ambig
- 单个矩形包络脉冲信号的模糊函数的matlab代码-Envelope of a single rectangular pulse signal ambiguity function of matlab code
MPSKTransmissonwithGausNoise
- 本程序用于完成BPSK、QPSK、8PSK的调制仿真。并可任意扩展到MPSK和MQAM。程序分成三个部分:phase.m对基带码元序列进行脉冲成型,可选矩形脉冲,升余弦脉冲和平方根升余弦脉冲; model.m 为主程序,完成各种信号的基带星座图映射、脉冲成型和调制; command.m给出一个简单的频谱显示测试。-This procedure for the completion of BPSK, QPSK, 8PSK modulation simulation. Arbitrary and m
IIRButterworthfilter.m
- scr ipt to design an IIR Filter low pass using Butterworth & lineal transformation to convert from analogic to digital a prototype filter. by actinio vjgonzalezg@gmail.com :) It plots: 1-Frecuency response of the filter imp
matlabVoice
- 語音信號是基於時間軸上的一維數位信號,在這裏主要是對語音信號進行頻域上的分析。在信號分析中,頻域往往包含了更多的資訊。對於頻域來說,大概有8種波形可以讓我們分析:矩形方波,鋸齒波,梯形波,臨界阻尼指數脈衝波形,三角波,餘旋波,余旋平方波,高斯波。對於各種波形,我們都可以用一種方法來分析,就是傅立葉變換:將時域的波形轉化到頻域來分析。-Voice signal is based on the timeline of one-dimensional digital signal, where mai
prnPulseGen
- Generate rectangular pulse modulated with a PRN code frequency shifted to Fc
qpskzjm
- matlab实现矩形脉冲和根升余弦脉冲的QPSK调制功率谱密度及不同信噪比信道下的星座图,直接运行main函数即可-Plot the power density spectrum of the transmitted signal (e.g., with the matlab function psd) with different pulse shapes. How is it affected if a root raised cosine pulse is chosen instead o
SpektrSignalOdinImp2222
- Function (SpektrSignalOdinImp2222.rar) calculates the spectrum of a rectangular pulse. Pulse duration and time position sets the user .
pulse-generate
- 本程序是矩形波的产生。第零步定义了要产生的波形的所有特征参数,矩形波的持续时间WIDTH,矩形波的采样点数POINTS,载波频率为F0,这个频率的最终引入是便于使用RF频率发射波形。第一步包括产生矩形波,并将其调制到RF上,注意,产生的信号的持续时间是矩形波宽度的5倍,这样,总的采样点数就是5*POINTS。同时还应注意,如果要产生一个基带信号,必须设置T0=0.第二步是画出所产生矩形波的源代码。- This procedure is rectangle wave production. Ste
m
- m序列发生器及其自相关 m序列构成的信号(矩形脉冲) m序列sinc成形信号的自相关-m-sequence generator and its associated m-sequences formed from the signal (rectangular pulse) m sinc sequence forming signal autocorrelation
rectpulse.m.tar
- Rectangular pulse propagation with FDTD Matlab
rectanglePulse
- 利用函数建立非负矩形脉冲,然后利用频谱分析函数对该矩形脉冲进行频谱分析,并进行频率移位修正(利用FFTSHIFT),观察该脉冲频谱。-Use function to create a non-negative rectangular pulse, and then use the spectral analysis of the rectangular pulse function spectral analysis, and the frequency shift correction (us
MyImpulse
- MyImpulse产生一个使用两个幅值为 1 的正弦信号构成一个矩形脉冲信号;-MyImpulse produce a use two amplitude of 1 sine signal constitute a rectangular pulse signal
rrs
- 矩形脉冲及频谱仿真程序,利用matlab实现矩形脉冲及其频谱仿真的程序-Rectangular pulse and spectrum simulation program using matlab rectangular pulse and its spectrum simulation program
raisedCosineFilter.m
- Role of Pulse Shaping in Communication Systems: The duals – Sinc and Rectangular Functions In communication systems, data is transmitted as binary bits ( ones and zeros). It is easier to implement a binary system using switches, where turning on
gen_ambig_cwcw
- 矩形脉冲信号CW组合波形的模糊函数图的仿真-Rectangular pulse signal ambiguity function diagram of the the CW combination of waveform simulation
mmm1
- OFDM is one of the best physical-layer candidates for cognitive radio (CR) systems, but rectangular pulse shaping gives rise to large spectrum sidelobes and interferes with the licensed user on the adjacent band. In this paper, an approach is
