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rubostcontrol.rar
- 在鲁棒控制中,对于不同的控制器对传递函数的时域和频域分析比较,In the robust control, the controller for different transfer function of time and frequency domain analysis
IIRditonglvboqi
- 正弦信号叠加高斯白噪声,通过IIR低通滤波器,并画出时域和频域上的波形频谱图-Sinusoidal signal superimposed Gaussian white noise through the IIR low-pass filter, and draw on the time domain and frequency domain waveform spectrum
DSP
- 先采集一单声道音频信号(.wav)并用WAVREAD文件采样读取,并对其进行频谱分析。分别用窗函数法和双线性变换法设计低通、高通、带通三种FIR滤波器和IIR滤波器。用M文件使信号通过滤波器并对输出信号进行时域和频域分析。-First acquisition of a mono audio signal (. Wav) files with sampling WAVREAD read, and their spectral analysis. Window function, respectiv
CDMA-2USER
- 二用户CDMA系统,信道为加性高斯信道,使用BPSK调制,15位M序列扩频,可以正确解扩解调。 输出为2用户的基带信号、扩频信号、PSK调制信号、解调信号的时域和频域特性,给出两个用户分别的误码率。 -Second, the user CDMA system, channel for the additive Gaussian channel, using BPSK modulation, 15 M Sequence Spread Spectrum, you can correct demo
chapter2
- 控制系统的时域和频域描述的介绍机说明文档中第二章-Control system in time domain and frequency domain descr iption of the introduction of machine documentation chapter
MATLABsignalPLOT
- 编写的MATLAB处理语音信号的软件界面,能够实现显示输入语音信号的混音,重放,以及波形的时域和频域显示-MATLAB signal plot
Pulse_compression
- 假定一个线性调频信号,作出线性调频信号的时域和频域波形,并对线性调频信号做脉冲压缩-Assuming a linear FM signal, making a linear FM signal in time domain and frequency domain waveforms, and a linear FM signal with pulse compression
matlabjingdianxinhaochuli
- 将源码中的地址目录改成所要分析的数据(数据可以使txt格式的),在MATLAB中运行就可以分析出数据的时域和频域图像,自相关互相关函数,以及功率谱图像-The source address in the directory into which to analyze the data (data can txt format), run in MATLAB can analyze the data in time domain and frequency domain image, from t
BasedonMATLABpronunciation
- 基于MATLAB的语音信号的调制和解调,包括画出各个阶段的语音时域和频域图形-Matlab-based voice signal modulation and demodulation, including draw stages of time domain and frequency domain speech
MATLAB-SSB
- 基于MATLAB的 SSB调制解调实现.利用MATLAB集成环境下的M文件,编写程序来实现SSB的调制解调,并绘制出解调前后的时域和频域波形及叠加噪声时解调前后的时频波形,根据运行结果和波形来分析该解调过程的正确性及信道对信号传输的影响。-MATLAB-based SSB modulation and demodulation to achieve. Advantage of MATLAB M-files integrated environment, programming to achiev
muss
- 采集输入声音信号,经过系统滤波器以及频谱测量器的处理,在界面一上显示原声音滤波信号的时域和频域波形。界面二则是播放保存在原声音文件中的录音,遇到超时或者停止状况时,停止播放录音。-Collecting the input sound signal, and filter through the system' s processing spectrum measurements, the interface a display of the original sound signal fi
noise
- 对噪声进行处理的程序,形成时域和频域的图形-Procedures for handling the noise, the formation of the graphics of the time domain and frequency domain
check-touying_6_25
- 对噪声进行处理的程序,形成时域和频域的图形-Procedures for handling the noise, the formation of the graphics of the time domain and frequency domain
Spectrum-Analyzer
- 用于对数字信号进行时域和频域分析。信号采集方式有三种:文件输入,声音录制和特定波形。-Analyse the digital signal in time domain and frequency domain . Signal acquisition in three ways: file input, sound recording and a specific waveform.
harmonic-and-harmonic--packet
- 共包含四个文件: hamo_packet.m 谐波小波包子程序,输入参数为原信号序列,采频,分解层数,返回三维数组,存储各层各频带分解结果; harmopacktest.m 检验上述子程序可行性的m文件; harmonic wavelet analysis.pdf Newland关于谐波小波的原始论文; 20130329谐波滤波.docx 内附matlab程序和分析结果。对电机电流信号做了谐波小波分解,分别从时域和频域构造谐波小波,结果显示,频域构造的小波光滑性稍差。-Conta
getTu
- 希尔伯特变换实现了SSB调试,画出信号的时域和频域的图象只管观察-Hilbert transform SSB debugging, draw the signals in time domain and frequency domain image just observed
Audio-Processing
- 语音处理的课程设计代码,分帧函数,和一些时域和频域的分析。-Voice processing curriculum design code, the function of the sub-frame, and the time domain and frequency domain analysis.
krishna_rcosflt
- 牛人krishna示例的升余弦滚降滤波器的时域和频域仿真-the simulation of raised cosine filter for both time and frequency domains,by krishna, happy learning!
time-and-frequency-characteristics
- 语音信号的时域和频域特性,包括录制、计算短时能量、短时过零率、短时傅里叶变换、加矩形窗等步骤-Speech signal in time domain and frequency domain characteristics, including recording, computing time energy, short-time zero-crossing rate, short-time Fourier transform, rectangular windows and other s
QPSK
- QPSK调制与解调,低通滤波器采用了时域和频域两种实现方式,截止频率fc = 200hz,采样频率fs= 1000hz,欢迎下载参考!-QPSK modulation and demodulation, using a low-pass filter with a time domain and frequency domain implemented way, the cutoff frequency fc = 200hz, the sampling frequency fs = 1000hz