294 lines
8.4 KiB
Mathematica
294 lines
8.4 KiB
Mathematica
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% Title: id31 microstation in EXP hutch
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% Date: 12 october 2018
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% Description: measure on id31 microstation in exp hutch
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% FS: =256Hz
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% all L28 (31V/m/s) except CH1 L4-C (276V/m/s)
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% ch1: marble Z
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% ch2: outer frame Ty Z
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% ch3: inner frame Tilt Z
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% ch4: hexa Z
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% ch5: marble H
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% ch6: outer frame TY H
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% ch7: inner frame Tilt H
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% ch8: hexa H
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% ch9: hammer
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% measurements 12 october 2018
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% ------------------------------------------------
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% excitation Y marble corner
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% Measurement1
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% excitation Y outer frame corner
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% Measurement2
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% excitation Y hexa
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% Measurement3
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% ------------------------------------------------
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% excitation Z marble corner
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% Measurement4
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% excitation Z outer frame corner
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% Measurement5
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% excitation Z hexa
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% Measurement6
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% ------------------------------------------------
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% excitation X marble corner
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% Measurement7
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% excitation X outer frame corner
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% Measurement8
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% excitation X hexa
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% Measurement9
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%%
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microstation=['Marble '; 'TY ';'Tilt '; 'Hexapod '];
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%
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% xxx_marble_x - excitation X direction on marble
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% xxx_marble_y - excitation Y direction on marble
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% xxx_marble_z - excitation Z direction on marble
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% xxx_hexa_x - excitation X direction on hexa
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% xxx_hexa_y - excitation Y direction on hexa
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% xxx_hexa_z - excitation Z direction on hexa
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% frf= transfert function acceleration/force en ms-2/N (complex)
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% phs= phase
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% coh= coherence
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% freq_frf= frequencies
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%% -------------------------------------------------------------------------
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% LOAD SAVED FRF
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% ------------------------------------------------------------------------
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% ch_max=16;
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% % --------------------------------
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%
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% mult=1e6; % --> m/s to micron/s
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%
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% nyqhp=2.56; % nyquist
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% f_cut=0.5; % cut frequency for high pass filter
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% t_win=4; % window length in sec
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% t_ovlp=0; % overlap window in sec
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warning off MATLAB:divideByZero
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cd FRF_id31_microstation_12october2018
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% specify capt # for which to run this
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capt=[1:9];
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for i=capt
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eval(['load Measurement',num2str(i)])
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for ch=1:8
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eval(['freq_frf(:,',num2str(1),')=FFT1_H1_',num2str(2),'_9_RMS_X_Val;'])
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%omeg=2*pi*freq;
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eval(['av_spc(:,',num2str(ch),')=FFT1_AvSpc_',num2str(ch),'_RMS_Y_Val;'])
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eval(['frf_mod(:,',num2str(ch),')=FFT1_H1_',num2str(ch),'_9_RMS_Y_Mod;'])
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eval(['frf_phs(:,',num2str(ch),')=FFT1_H1_',num2str(ch),'_9_RMS_Y_Phas;'])
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eval(['frf_reim(:,',num2str(ch),')=FFT1_H1_',num2str(ch),'_9_Y_ReIm;'])
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%eval(['frf_coh(:,',num2str(ch),')=FFT1_Coh_',num2str(ch),'_9_RMS_Y_Val;'])
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end
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eval(['mod',num2str(i),'=frf_mod;'])
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eval(['phs',num2str(i),'=frf_phs;'])
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eval(['ReIm',num2str(i),'=frf_reim;'])
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%eval(['coh',num2str(i),'=frf_coh;'])
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eval(['avsp',num2str(i),'=av_spc;'])
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end
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%% --------plot settings for colors and linewidth----
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proname(1)={'LineWidth'};
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proname(2)={'Color'};
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proname(3)={'LineStyle'};
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val(1,1) = {.5} ;val(1,2) = {[0.6 0.2 1]} ;val(1,3) = {'-'};
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val(2,1) = {2} ;val(2,2) = {[0 0 1]} ;val(2,3) = {'-'};
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val(3,1) = {0.5} ;val(3,2) = {[0.25 0.9 0.65]} ;val(3,3) = {'-'};
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val(4,1) = {2} ;val(4,2) = {[0 1 0]} ;val(4,3) = {'-'};
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val(5,1) = {0.5} ;val(5,2) = {[1 0.4 0.4]} ;val(5,3) = {'-'};
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val(6,1) = {2} ;val(6,2) = {[1 0 0]} ;val(6,3) = {'-'};
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val(7,1) = {1} ;val(7,2) = {[0.8 0.8 0.8]} ;val(7,3) = {'-'};
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val(8,1) = {2} ;val(8,2) = {[0.1 0.1 0.2]} ;val(8,3) = {'-'};
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val(9,1) = {1} ;val(9,2) = {[0.7 0.8 0.4]} ;val(9,3) = {'-'};
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val(10,1) = {2} ;val(10,2) = {[0.7 0.8 0.2]} ;val(10,3) = {'-'};
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val(11,1) = {1} ;val(11,2) = {[0.9 0.7 0.35]} ;val(11,3) = {'-'};
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val(12,1) = {2} ;val(12,2) = {[1 0.8 0.3]} ;val(12,3) = {'-'};
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val(13,1) = {1} ;val(13,2) = {[0.5 0.4 0.3]} ;val(13,3) = {'-'};
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val(14,1) = {2} ;val(14,2) = {[0.5 0.3 0.2]} ;val(14,3) = {'-'};
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%% --------------------------------Plots
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xlab=['Frequency in Hz'];
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xlab1=['Hours since start: 06/07/2012 at 19:40'];
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ylab1=['Velocity / Force in m.s^{-1}.N^{-1}.'];
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ylab2=['PSD in \mum^{2}/Hz'];
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ylab3=['Amplification'];
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ylab4=['PSD in (\mum/s)^{2}/Hz'];
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ylab5=['PSD in a.u.'];
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ylab6=['Phase in deg.'];
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ylab7=['Coherence'];
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font_s=14;
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%% ---------------------------------
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tit_1=['ID31 microstation - (X) FRF - Hammer Marble'];
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tit_1_a=['ID31 microstation - (X) FRF - Hammer TY'];
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tit_1_b=['ID31 microstation - (X) FRF - Hammer hexa'];
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tit_2=['ID31 microstation - (Y) FRF - Hammer Marble'];
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tit_2_a=['ID31 microstation - (Y) FRF - Hammer TY'];
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tit_2_b=['ID31 microstation - (Y) FRF - Hammer hexa'];
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tit_3=['ID31 microstation - (Z) FRF - Hammer Marble'];
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tit_3_a=['ID31 microstation - (Z) FRF - Hammer TY'];
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tit_3_b=['ID31 microstation - (Z) FRF - Hammer hexa'];
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% tit_4=['ID31 microstation - Horizontal (X) Phase'];
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% tit_5=['ID31 microstation - Horizontal (Y) Phase'];
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% tit_6=['ID31 microstation - Vertical (Z) Phase'];
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% tit_7=['ID31 microstation - Horizontal (X) Coh'];
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% tit_8=['ID31 microstation - Horizontal (Y) Coh'];
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% tit_9=['ID31 microstation - Vertical (Z) Coh'];
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legend1=['microstation(1,:),microstation(2,:),microstation(3,:),microstation(4,:),''Location'',''SouthEast'''];
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%% FRF X direction
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figure
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h=semilogy(freq_frf,abs([ReIm7(:,5) ReIm7(:,6) ReIm7(:,7) ReIm7(:,8)]));
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set(h,proname,val([6 4 2 8],1:3))
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eval(['legend(',legend1,')'])
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titlabel_font(tit_1,xlab,ylab1,font_s);
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%axis([1 100 1e-2 1e2])
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grid
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saveas(gcf,'frf_x_hammer_marble','fig')
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print -dpng frf_x_hammer_marble
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figure
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h=semilogy(freq_frf,abs([ReIm8(:,5) ReIm8(:,6) ReIm8(:,7) ReIm8(:,8)]));
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set(h,proname,val([6 4 2 8],1:3))
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eval(['legend(',legend1,')'])
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titlabel_font(tit_1_a,xlab,ylab1,font_s);
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%axis([1 100 1e-2 1e2])
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grid
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saveas(gcf,'frf_x_hammer_ty','fig')
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print -dpng frf_x_hammer_ty
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figure
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h=semilogy(freq_frf,abs([ReIm9(:,5) ReIm9(:,6) ReIm9(:,7) ReIm9(:,8)]));
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set(h,proname,val([6 4 2 8],1:3))
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eval(['legend(',legend1,')'])
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titlabel_font(tit_1_b,xlab,ylab1,font_s);
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%axis([1 100 1e-2 1e2])
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grid
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saveas(gcf,'frf_x_hammer_hexa','fig')
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print -dpng frf_x_hammer_hexa
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%% FRF Y direction
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figure
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h=semilogy(freq_frf,abs([ReIm1(:,5) ReIm1(:,6) ReIm1(:,7) ReIm1(:,8)]));
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set(h,proname,val([6 4 2 8],1:3))
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eval(['legend(',legend1,')'])
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titlabel_font(tit_2,xlab,ylab1,font_s);
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%axis([1 100 1e-2 1e2])
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grid
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saveas(gcf,'frf_y_hammer_marble','fig')
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print -dpng frf_y_hammer_marble
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figure
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h=semilogy(freq_frf,abs([ReIm2(:,5) ReIm2(:,6) ReIm2(:,7) ReIm2(:,8)]));
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set(h,proname,val([6 4 2 8],1:3))
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eval(['legend(',legend1,')'])
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titlabel_font(tit_2_a,xlab,ylab1,font_s);
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%axis([1 100 1e-2 1e2])
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grid
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saveas(gcf,'frf_y_hammer_ty','fig')
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print -dpng frf_y_hammer_ty
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figure
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h=semilogy(freq_frf,abs([ReIm3(:,5) ReIm3(:,6) ReIm3(:,7) ReIm3(:,8)]));
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set(h,proname,val([6 4 2 8],1:3))
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eval(['legend(',legend1,')'])
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titlabel_font(tit_2_b,xlab,ylab1,font_s);
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%axis([1 100 1e-2 1e2])
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grid
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saveas(gcf,'frf_y_hammer_hexa','fig')
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print -dpng frf_y_hammer_hexa
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%% FRF Z direction
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figure
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h=semilogy(freq_frf,abs([ReIm4(:,5) ReIm4(:,6) ReIm4(:,7) ReIm4(:,8)]));
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set(h,proname,val([6 4 2 8],1:3))
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eval(['legend(',legend1,')'])
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titlabel_font(tit_3,xlab,ylab1,font_s);
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%axis([1 100 1e-2 1e2])dd
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grid
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saveas(gcf,'frf_z_hammer_marble','fig')
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print -dpng frf_z_hammer_marble
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figure
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h=semilogy(freq_frf,abs([ReIm5(:,5) ReIm5(:,6) ReIm5(:,7) ReIm5(:,8)]));
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set(h,proname,val([6 4 2 8],1:3))
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eval(['legend(',legend1,')'])
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titlabel_font(tit_3_a,xlab,ylab1,font_s);
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%axis([1 100 1e-2 1e2])
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grid
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saveas(gcf,'frf_z_hammer_ty','fig')
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print -dpng frf_z_hammer_ty
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figure
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h=semilogy(freq_frf,abs([ReIm6(:,5) ReIm6(:,6) ReIm6(:,7) ReIm6(:,8)]));
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set(h,proname,val([6 4 2 8],1:3))
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eval(['legend(',legend1,')'])
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titlabel_font(tit_3_b,xlab,ylab1,font_s);
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%axis([1 100 1e-2 1e2])
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grid
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saveas(gcf,'frf_z_hammer_hexa','fig')
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print -dpng frf_z_hammer_hexa
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%% save data
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% save ('coher_marble_x.mat', 'coh1')
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% save ('coher_marble_y.mat', 'coh3')
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% save ('coher_marble_z.mat', 'coh5')
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% save ('coher_hexa_z.mat', 'coh6')
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% save ('coher_hexa_y.mat', 'coh4')
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% save ('coher_hexa_x.mat', 'coh2')
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save ('phs_ty_x.mat', 'phs8')
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save ('phs_ty_y.mat', 'phs2')
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save ('phs_ty_z.mat', 'phs5')
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save ('phs_hexa_x.mat', 'phs9')
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save ('phs_hexa_y.mat', 'phs3')
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save ('phs_hexa_z.mat', 'phs6')
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save ('phs_marble_x.mat', 'phs7')
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save ('phs_marble_y.mat', 'phs1')
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save ('phs_marble_z.mat', 'phs4')
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save ('frf_ty_x.mat', 'ReIm8')
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save ('frf_ty_y.mat', 'ReIm2')
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save ('frf_ty_z.mat', 'ReIm5')
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save ('frf_hexa_x.mat', 'ReIm9')
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save ('frf_hexa_y.mat', 'ReIm3')
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save ('frf_hexa_z.mat', 'ReIm6')
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save ('frf_marble_x.mat', 'ReIm7')
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save ('frf_marble_y.mat', 'ReIm1')
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save ('frf_marble_z.mat', 'ReIm4')
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save ('freq_frf.mat', 'freq_frf')
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