【數字訊號處理】基於matlab GUI手機訊號頻譜+時域分析【含Matlab原始碼 1042期】
阿新 • • 發佈:2021-06-21
一、簡介
基於matlab GUI手機訊號頻譜+時域分析
二、原始碼
function varargout = shuangyinpin(varargin) % SHUANGYINPIN MATLAB code for shuangyinpin.fig % SHUANGYINPIN, by itself, creates a new SHUANGYINPIN or raises the existing % singleton*. % % H = SHUANGYINPIN returns the handle to a new SHUANGYINPIN or the handle to % the existing singleton*. % % SHUANGYINPIN('CALLBACK',hObject,eventData,handles,...) calls the local % function named CALLBACK in SHUANGYINPIN.M with the given input arguments. % % SHUANGYINPIN('Property','Value',...) creates a new SHUANGYINPIN or raises the % existing singleton*. Starting from the left, property value pairs are % applied to the GUI before shuangyinpin_OpeningFcn gets called. An % unrecognized property name or invalid value makes property application % stop. All inputs are passed to shuangyinpin_OpeningFcn via varargin. % % *See GUI Options on GUIDE's Tools menu. Choose "GUI allows only one % instance to run (singleton)". % % See also: GUIDE, GUIDATA, GUIHANDLES % Edit the above text to modify the response to help shuangyinpin % Last Modified by GUIDE v2.5 30-Nov-2011 22:51:30 % Begin initialization code - DO NOT EDIT gui_Singleton = 1; gui_State = struct('gui_Name', mfilename, ... 'gui_Singleton', gui_Singleton, ... 'gui_OpeningFcn', @shuangyinpin_OpeningFcn, ... 'gui_OutputFcn', @shuangyinpin_OutputFcn, ... 'gui_LayoutFcn', [] , ... 'gui_Callback', []); if nargin && ischar(varargin{1}) gui_State.gui_Callback = str2func(varargin{1}); end if nargout [varargout{1:nargout}] = gui_mainfcn(gui_State, varargin{:}); else gui_mainfcn(gui_State, varargin{:}); end % End initialization code - DO NOT EDIT % --- Executes just before shuangyinpin is made visible. function shuangyinpin_OpeningFcn(hObject, eventdata, handles, varargin) % This function has no output args, see OutputFcn. % hObject handle to figure % eventdata reserved - to be defined in a future version of MATLAB % handles structure with handles and user data (see GUIDATA) % varargin command line arguments to shuangyinpin (see VARARGIN) % Choose default command line output for shuangyinpin handles.output = hObject; % Update handles structure guidata(hObject, handles); % UIWAIT makes shuangyinpin wait for user response (see UIRESUME) % uiwait(handles.figure1); % --- Outputs from this function are returned to the command line. function varargout = shuangyinpin_OutputFcn(hObject, eventdata, handles) % varargout cell array for returning output args (see VARARGOUT); % hObject handle to figure % eventdata reserved - to be defined in a future version of MATLAB % handles structure with handles and user data (see GUIDATA) % Get default command line output from handles structure varargout{1} = handles.output; % --- Executes on button press in pushbutton1. function pushbutton1_Callback(hObject, eventdata, handles) % hObject handle to pushbutton1 (see GCBO) % eventdata reserved - to be defined in a future version of MATLAB % handles structure with handles and user data (see GUIDATA) a=get(handles.edit1,'String'); a=strcat(a,'1'); set(handles.edit1,'String',a); Fs=8000; n=(0:511); FFTN=1024; snr=0; amp=sqrt(2*10^(snr/10)); f1=697; f2=1209; x=amp*(sin(2*pi*f1/Fs*n)+sin(2*pi*f2/Fs*n)); fx=fft(x,FFTN); axes(handles.axes1) plot(x,'LineWidth',1.5); xlabel('n');ylabel('x(n)');title('時域波形'); axes(handles.axes2) plot((0:FFTN/2-1)/FFTN*Fs/1000,abs(fx(1:FFTN/2)),'LineWidth',1.5); xlabel('kHz');title('幅頻波形'); sound(x); axes(handles.axes3); specgram(x,512,Fs,512); % --- Executes on button press in pushbutton2. function pushbutton2_Callback(hObject, eventdata, handles) % hObject handle to pushbutton2 (see GCBO) % eventdata reserved - to be defined in a future version of MATLAB % handles structure with handles and user data (see GUIDATA) Fs=8000; n=(0:511); FFTN=1024; snr=0.989; a=get(handles.edit1,'String'); a=strcat(a,'2'); set(handles.edit1,'String',a); amp=sqrt(2*10^(snr/10)); f1=697; f2=1336; x=amp*(sin(2*pi*f1/Fs*n)+sin(2*pi*f2/Fs*n)); sound(x); fx=fft(x,FFTN); axes(handles.axes1);plot(x,'LineWidth',1.5); xlabel('n');ylabel('x(n)');title('時域波形'); axes(handles.axes2);plot((0:FFTN/2-1)/FFTN*Fs/1000,abs(fx(1:FFTN/2)),'LineWidth',1.5); xlabel('kHz');title('幅頻特性'); axes(handles.axes3); specgram(x,512,Fs,512); % --- Executes on button press in pushbutton3. function pushbutton3_Callback(hObject, eventdata, handles) % hObject handle to pushbutton3 (see GCBO) % eventdata reserved - to be defined in a future version of MATLAB % handles structure with handles and user data (see GUIDATA) a=get(handles.edit1,'String'); a=strcat(a,'3'); set(handles.edit1,'String',a); Fs=8000; n=(0:511); FFTN=1024; snr=0; amp=sqrt(2*10^(snr/10)); f1=697; f2=1447; x=amp*(sin(2*pi*f1/Fs*n)+sin(2*pi*f2/Fs*n)); sound(x); fx=fft(x,FFTN); axes(handles.axes1);plot(x,'LineWidth',1.5); xlabel('n');ylabel('x(n)');title('時域波形'); axes(handles.axes2);plot((0:FFTN/2-1)/FFTN*Fs/1000,abs(fx(1:FFTN/2)),'LineWidth',1.5); xlabel('kHz');title('幅頻特性'); axes(handles.axes3); specgram(x,512,Fs,512); % --- Executes on button press in pushbutton4. function pushbutton4_Callback(hObject, eventdata, handles) % hObject handle to pushbutton4 (see GCBO) % eventdata reserved - to be defined in a future version of MATLAB % handles structure with handles and user data (see GUIDATA) a=get(handles.edit1,'String'); a=strcat(a,'A'); set(handles.edit1,'String',a); Fs=8000; n=(0:511); FFTN=1024; snr=0; amp=sqrt(2*10^(snr/10)); f1=697; f2=633; x=amp*(sin(2*pi*f1/Fs*n)+sin(2*pi*f2/Fs*n)); sound(x); fx=fft(x,FFTN); axes(handles.axes1);plot(x,'LineWidth',1.5); xlabel('n');ylabel('x(n)');title('時域波形'); axes(handles.axes2);plot((0:FFTN/2-1)/FFTN*Fs/1000,abs(fx(1:FFTN/2)),'LineWidth',1.5); xlabel('kHz');title('幅頻特性'); axes(handles.axes3); specgram(x,512,Fs,512); % --- Executes on button press in pushbutton5. function pushbutton5_Callback(hObject, eventdata, handles) % hObject handle to pushbutton5 (see GCBO) % eventdata reserved - to be defined in a future version of MATLAB % handles structure with handles and user data (see GUIDATA) a=get(handles.edit1,'String'); a=strcat(a,'4'); set(handles.edit1,'String',a); Fs=8000; n=(0:511); FFTN=1024; snr=0; amp=sqrt(2*10^(snr/10)); f1=770; f2=1290; x=amp*(sin(2*pi*f1/Fs*n)+sin(2*pi*f2/Fs*n)); sound(x); fx=fft(x,FFTN); axes(handles.axes1);plot(x,'LineWidth',1.5); xlabel('n');ylabel('x(n)');title('時域波形'); axes(handles.axes2);plot((0:FFTN/2-1)/FFTN*Fs/1000,abs(fx(1:FFTN/2)),'LineWidth',1.5); xlabel('kHz');title('幅頻特性'); axes(handles.axes3); specgram(x,512,Fs,512);
三、執行結果
四、備註
版本:2014a