六步学会用MATLAB做空间计量回归详细步骤(28页).doc
《六步学会用MATLAB做空间计量回归详细步骤(28页).doc》由会员分享,可在线阅读,更多相关《六步学会用MATLAB做空间计量回归详细步骤(28页).doc(28页珍藏版)》请在淘文阁 - 分享文档赚钱的网站上搜索。
1、-六步学会用MATLAB做空间计量回归详细步骤-第 28 页MATLAB链接:Excel:选项加载项COM加载项转到没有勾选项2. MATLAB安装目录中寻找toolboxexlink点击,启用宏 E:MATLABtoolboxexlink然后,Excel中就出现MATLAB工具(注意Excel中的数据:)matlab(1) 点击start MATLAB(2) senddata to matlab ,并对变量矩阵变量进行命名(注意:选取变量为数值,不包括各变量)(data表中数据进行命名)(空间权重进行命名)(3) 导入MATLAB中的两个矩阵变量就可以看见elhorst和jplv7两个程序文
2、件夹复制到MATLAB安装目录的toolbox文件夹路径:程序,得出结果T=30; N=46; W=normw(W1); y=A(:,3); x=A(:,4,6); xconstant=ones(N*T,1);nobs K=size(x);results=ols(y,xconstant x);vnames=strvcat(logcit,intercept,logp,logy);prt_reg(results,vnames,1);sige=results.sige*(nobs-K)/nobs);% The (robust)LM tests developed by ElhorstLMsarsem
3、_panel(results,W,y,xconstant x); % (Robust) LM tests解释每一行分别表示:该面板数据的时期数为30(T=30),该面板数据有30个地区(N=30),将空间权重矩阵标准化(W=normw(w1)),将名为A(以矩阵形式出现在MATLABA中)的变量的第3列数据定义为被解释变量y,将名为A的变量的第4、5、6列数据定义为解释变量矩阵x,定义一个有N*T行,1列的全1矩阵,该矩阵名为:xconstant,(ones即为全1矩阵)说明解释变量矩阵x的大小:有nobs行,K列。(size为描述矩阵的大小)。附录:静态面板空间计量经济学一、OLS静态面板编
4、程1、普通面板编程T=30; N=46; W=normw(W1); y=A(:,3); x=A(:,4,6); xconstant=ones(N*T,1);nobs K=size(x);results=ols(y,xconstant x);vnames=strvcat(logcit,intercept,logp,logy);prt_reg(results,vnames,1);sige=results.sige*(nobs-K)/nobs);% The (robust)LM tests developed by ElhorstLMsarsem_panel(results,W,y,xconstan
5、t x); % (Robust) LM tests2、空间固定OLS (spatial-fixed effects)T=30; N=46; W=normw(W1); y=A(:,3); x=A(:,4,6); xconstant=ones(N*T,1);nobs K=size(x);model=1;ywith,xwith,meanny,meannx,meanty,meantx=demean(y,x,N,T,model);results=ols(ywith,xwith);vnames=strvcat(logcit,logp,logy); % should be changed if x is c
6、hangedprt_reg(results,vnames);sfe=meanny-meannx*results.beta; % including the constant termyme = y - mean(y);et=ones(T,1);error=y-kron(et,sfe)-x*results.beta;rsqr1 = error*error;rsqr2 = yme*yme;FE_rsqr2 = 1.0 - rsqr1/rsqr2 % r-squared including fixed effectssige=results.sige*(nobs-K)/nobs);LMsarsem_
7、panel(results,W,ywith,xwith); % (Robust) LM tests3、时期固定OLS(time-period fixed effects)T=30; N=46; W=normw(W1); y=A(:,3); x=A(:,4,6); xconstant=ones(N*T,1);nobs K=size(x);model=2;ywith,xwith,meanny,meannx,meanty,meantx=demean(y,x,N,T,model);results=ols(ywith,xwith);vnames=strvcat(logcit,logp,logy); %
8、should be changed if x is changedprt_reg(results,vnames);tfe=meanty-meantx*results.beta; % including the constant termyme = y - mean(y);en=ones(N,1);error=y-kron(tfe,en)-x*results.beta;rsqr1 = error*error;rsqr2 = yme*yme;FE_rsqr2 = 1.0 - rsqr1/rsqr2 % r-squared including fixed effectssige=results.si
9、ge*(nobs-K)/nobs);LMsarsem_panel(results,W,ywith,xwith); % (Robust) LM tests4、空间与时间双固定模型T=30; N=46; W=normw(W1); y=A(:,3); x=A(:,4,6); xconstant=ones(N*T,1);nobs K=size(x);model=3;ywith,xwith,meanny,meannx,meanty,meantx=demean(y,x,N,T,model);results=ols(ywith,xwith);vnames=strvcat(logcit,logp,logy);
10、 % should be changed if x is changedprt_reg(results,vnames)en=ones(N,1);et=ones(T,1);intercept=mean(y)-mean(x)*results.beta; sfe=meanny-meannx*results.beta-kron(en,intercept);tfe=meanty-meantx*results.beta-kron(et,intercept);yme = y - mean(y);ent=ones(N*T,1);error=y-kron(tfe,en)-kron(et,sfe)-x*resul
11、ts.beta-kron(ent,intercept);rsqr1 = error*error;rsqr2 = yme*yme;FE_rsqr2 = 1.0 - rsqr1/rsqr2 % r-squared including fixed effectssige=results.sige*(nobs-K)/nobs);LMsarsem_panel(results,W,ywith,xwith); % (Robust) LM tests二、静态面板SAR模型1、无固定效应(No fixed effects)T=30; N=46; W=normw(W1);y=A(:,3);x=A(:,4,6);
12、for t=1:T t1=(t-1)*N+1;t2=t*N; wx(t1:t2,:)=W*x(t1:t2,:);endxconstant=ones(N*T,1);nobs K=size(x);info.lflag=0; info.model=0;info.fe=0; results=sar_panel_FE(y,xconstant x,W,T,info); vnames=strvcat(logcit,intercept,logp,logy);prt_spnew(results,vnames,1)% Print out effects estimatesspat_model=0;direct_i
13、ndirect_effects_estimates(results,W,spat_model);panel_effects_sar(results,vnames,W);2、空间固定效应(Spatial fixed effects)T=30; N=46; W=normw(W1);y=A(:,3);x=A(:,4,6); for t=1:T t1=(t-1)*N+1;t2=t*N; wx(t1:t2,:)=W*x(t1:t2,:);endxconstant=ones(N*T,1);nobs K=size(x);info.lflag=0;info.model=1;info.fe=0; results
14、=sar_panel_FE(y,x,W,T,info); vnames=strvcat(logcit,logp,logy);prt_spnew(results,vnames,1)% Print out effects estimatesspat_model=0;direct_indirect_effects_estimates(results,W,spat_model);panel_effects_sar(results,vnames,W);3、时点固定效应(Time period fixed effects)T=30; N=46; W=normw(W1);y=A(:,3);x=A(:,4,6
15、); for t=1:T t1=(t-1)*N+1;t2=t*N; wx(t1:t2,:)=W*x(t1:t2,:);endxconstant=ones(N*T,1);nobs K=size(x);info.lflag=0; % required for exact resultsinfo.model=2;info.fe=0; % Do not print intercept and fixed effects; use info.fe=1 to turn onresults=sar_panel_FE(y,x,W,T,info); vnames=strvcat(logcit,logp,logy
16、);prt_spnew(results,vnames,1)% Print out effects estimatesspat_model=0;direct_indirect_effects_estimates(results,W,spat_model);panel_effects_sar(results,vnames,W);4、双固定效应(Spatial and time period fixed effects)T=30; N=46; W=normw(W1);y=A(:,3);x=A(:,4,6); for t=1:T t1=(t-1)*N+1;t2=t*N; wx(t1:t2,:)=W*x
17、(t1:t2,:);endxconstant=ones(N*T,1);nobs K=size(x);info.lflag=0; % required for exact resultsinfo.model=3;info.fe=0; % Do not print intercept and fixed effects; use info.fe=1 to turn onresults=sar_panel_FE(y,x,W,T,info); vnames=strvcat(logcit,logp,logy);prt_spnew(results,vnames,1)% Print out effects
18、estimatesspat_model=0;direct_indirect_effects_estimates(results,W,spat_model);panel_effects_sar(results,vnames,W);三、静态面板SDM模型1、无固定效应(No fixed effects)T=30; N=46; W=normw(W1);y=A(:,3);x=A(:,4,6); for t=1:T t1=(t-1)*N+1;t2=t*N; wx(t1:t2,:)=W*x(t1:t2,:);endxconstant=ones(N*T,1);nobs K=size(x);info.lfla
19、g=0; info.model=0;info.fe=0; results=sar_panel_FE(y,xconstant x wx,W,T,info); vnames=strvcat(logcit,intercept,logp,logy,W*logp,W*logy);prt_spnew(results,vnames,1)% Print out effects estimatesspat_model=1;direct_indirect_effects_estimates(results,W,spat_model);panel_effects_sdm(results,vnames,W);2、空间
20、固定效应(Spatial fixed effects)T=30; N=46; W=normw(W1);y=A(:,3);x=A(:,4,6); for t=1:T t1=(t-1)*N+1;t2=t*N; wx(t1:t2,:)=W*x(t1:t2,:);endxconstant=ones(N*T,1);nobs K=size(x);info.lflag=0; % required for exact resultsinfo.model=1;info.fe=0; % Do not print intercept and fixed effects; use info.fe=1 to turn
21、onresults=sar_panel_FE(y,x wx,W,T,info); vnames=strvcat(logcit,logp,logy,W*logp,W*logy);prt_spnew(results,vnames,1)% Print out effects estimatesspat_model=1;direct_indirect_effects_estimates(results,W,spat_model);panel_effects_sdm(results,vnames,W);3、时点固定效应(Time period fixed effects)T=30; N=46; W=no
22、rmw(W1);y=A(:,3);x=A(:,4,6); for t=1:T t1=(t-1)*N+1;t2=t*N; wx(t1:t2,:)=W*x(t1:t2,:);endxconstant=ones(N*T,1);nobs K=size(x);info.lflag=0; % required for exact resultsinfo.model=2;info.fe=0; % Do not print intercept and fixed effects; use info.fe=1 to turn on% New routines to calculate effects estim
- 配套讲稿:
如PPT文件的首页显示word图标,表示该PPT已包含配套word讲稿。双击word图标可打开word文档。
- 特殊限制:
部分文档作品中含有的国旗、国徽等图片,仅作为作品整体效果示例展示,禁止商用。设计者仅对作品中独创性部分享有著作权。
- 关 键 词:
- 学会 MATLAB 空间 计量 回归 详细 步骤 28
限制150内