- vr matlab需需要的M文件
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文件名称:WinRAR-ZIP
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- 上传时间:2013-11-28
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文件大小:145.4kb
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文件包含现代控制理论中的一些控制程序,可供初期学习者使用,这些都是matlab中所没有的程序。-File contains a number of modern control theory control procedures for early learners, these are programs that are not in matlab.
(系统自动生成,下载前可以参看下载内容)
下载文件列表
comps_sys.m
contr_can1_reali.m
contr_can1_reali_example.m
contr_can2.m
contr_can2_example.m
contr_can2_reali.m
contr_can2_reali_example.m
contr_decomp.m
contr_decomp_example.m
ctr_canon.m
ctr_canon_realiz.m
ctrb_obsvf.m
ctrbf2.m
decoup.m
dif2ss.m
feedback_law_output.fig
feedback_law_output.m
feedback_model.m
feedbacklaw_output.m
find_indp_vect.m
find_indp_vect2.m
hanshuceshi.m
jordan_canon.m
Judge_contr.m
Judge_lya_stabi.m
Judge_obsv.m
Linear_response.m
Linsys_con_gui.fig
Linsys_con_gui.m
Linsys_gui.fig
Linsys_gui.m
Linsys_gui2.fig
Linsys_gui2.m
lti_analysis.fig
lti_analysis.m
lti_struct_analysis.fig
lti_struct_analysis.m
lti_synthesis.fig
lti_synthesis.m
luenb_canon.m
luenberger2.m
luenberger2_2.m
luenberger2_example.m
m2_1.m
m2_2.m
m2_3.m
m2_4.m
m2_5.m
m2_6.m
m2_7.m
m2_8.m
m2_9.m
m3_1.m
m3_2.m
m3_3.m
m3_4.m
m3_5.m
m3_6.m
m3_7.m
m3_8.m
m3_9.m
m3_10.m
m4_1.m
m4_2.m
m4_3.m
m4_4.m
m4_4a.m
m4_5.m
m4_5a.m
m4_6.m
m4_7.m
m4_8.m
m4_9.m
m4_10.m
m4_11.m
m4_12.m
m5_1.m
m5_2.m
m5_3.m
m6_1.m
m6_2.m
m6_3.m
m6_5.m
m6_6.m
m6_7.m
m6_8.m
m7_1.m
m7_2.m
mimo_ccanon_realiz.m
MIMO_minireailization_example.m
mimo_ocanon_realiz.m
min_tf2ss.m
Mini_Var_Regu.m
N_ctrb_obsvf.m
N_ctrb_obsvf3.m
observ_decomp.m
observ_decomp_example.m
obsv_canon.m
obsv_lsim.m
obsv_model_output.fig
obsv_model_output.m
obsvf2.m
obsvf22.m
olti_synthesis.fig
olti_synthesis.m
oposit_def.m
pole_assig_luenberger2.m
pole_assig_luenberger2_example.m
pole_assig_wonham2.m
pole_assig_wonham2_2.m
pole_assig_wonham2_example.m
pole_method_selec.fig
pole_method_selec.m
poles_assig_selec.fig
poles_assig_selec.m
poly_add.m
posit_def.m
rdobsv.m
rdobsv_lsim.m
rdobsv_lsim2.m
simul_para_input.fig
simul_para_input.m
ssmodel_output.fig
ssmodel_output.m
stable_sys.m
statefeed.m
sym_lsim.m
tfmodel_output.fig
tfmodel_output.m
wonham_canon.m
wonham2.m
wonham2_2.m
wonham2_example.m
contr_can1_reali.m
contr_can1_reali_example.m
contr_can2.m
contr_can2_example.m
contr_can2_reali.m
contr_can2_reali_example.m
contr_decomp.m
contr_decomp_example.m
ctr_canon.m
ctr_canon_realiz.m
ctrb_obsvf.m
ctrbf2.m
decoup.m
dif2ss.m
feedback_law_output.fig
feedback_law_output.m
feedback_model.m
feedbacklaw_output.m
find_indp_vect.m
find_indp_vect2.m
hanshuceshi.m
jordan_canon.m
Judge_contr.m
Judge_lya_stabi.m
Judge_obsv.m
Linear_response.m
Linsys_con_gui.fig
Linsys_con_gui.m
Linsys_gui.fig
Linsys_gui.m
Linsys_gui2.fig
Linsys_gui2.m
lti_analysis.fig
lti_analysis.m
lti_struct_analysis.fig
lti_struct_analysis.m
lti_synthesis.fig
lti_synthesis.m
luenb_canon.m
luenberger2.m
luenberger2_2.m
luenberger2_example.m
m2_1.m
m2_2.m
m2_3.m
m2_4.m
m2_5.m
m2_6.m
m2_7.m
m2_8.m
m2_9.m
m3_1.m
m3_2.m
m3_3.m
m3_4.m
m3_5.m
m3_6.m
m3_7.m
m3_8.m
m3_9.m
m3_10.m
m4_1.m
m4_2.m
m4_3.m
m4_4.m
m4_4a.m
m4_5.m
m4_5a.m
m4_6.m
m4_7.m
m4_8.m
m4_9.m
m4_10.m
m4_11.m
m4_12.m
m5_1.m
m5_2.m
m5_3.m
m6_1.m
m6_2.m
m6_3.m
m6_5.m
m6_6.m
m6_7.m
m6_8.m
m7_1.m
m7_2.m
mimo_ccanon_realiz.m
MIMO_minireailization_example.m
mimo_ocanon_realiz.m
min_tf2ss.m
Mini_Var_Regu.m
N_ctrb_obsvf.m
N_ctrb_obsvf3.m
observ_decomp.m
observ_decomp_example.m
obsv_canon.m
obsv_lsim.m
obsv_model_output.fig
obsv_model_output.m
obsvf2.m
obsvf22.m
olti_synthesis.fig
olti_synthesis.m
oposit_def.m
pole_assig_luenberger2.m
pole_assig_luenberger2_example.m
pole_assig_wonham2.m
pole_assig_wonham2_2.m
pole_assig_wonham2_example.m
pole_method_selec.fig
pole_method_selec.m
poles_assig_selec.fig
poles_assig_selec.m
poly_add.m
posit_def.m
rdobsv.m
rdobsv_lsim.m
rdobsv_lsim2.m
simul_para_input.fig
simul_para_input.m
ssmodel_output.fig
ssmodel_output.m
stable_sys.m
statefeed.m
sym_lsim.m
tfmodel_output.fig
tfmodel_output.m
wonham_canon.m
wonham2.m
wonham2_2.m
wonham2_example.m
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