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雷达中的微多普勒效应 源码,matlab代码 The micro-doppler effect in radar
The MATLAB source codes in the book are provided "as is",
with no guarantee whatsoever, and for non-commercial use only.
The contributors of the source codes will not be liable for any
damage caused.
MATLAB source codes provided include in Chapter 1, 2, 3, and 4.
Chapter 1:
Demonstrate micro-Doppler signature of a uniformly rotating ALCM
(air-lauched cruise missile) using a simulated data.
ALCMSignature.m
stft.m
RotatingALCM.dat
Chapter 2:
Illustrate a slider-crank non-rigid motion and calculate linear and
angular kinematic parameters.
Illustrate theoretical micro-Doppler signatures of three scatterers
in an object while the object rotating, spinning, coning, and precession.
slidercrankcalculation.m
rotation_theory.m
spinning_theory.m
coning_theory.m
precession_theory.m
Chapter 3:
Illustrate examples of rigid body motion, simulations of radar returns
from rigid body motions, and corresponding micro-Doppler signatures.
Pendulum:
PendulumDynamic.m
PendulumDampingDynamic.m
PendulumDampingDrivingDynamic.m
Pendulum.m
PendulumDamping.m
PendulumDriving.m
PendulumDampingDriving.m
RadarPendulumReturns.m
XYZConvention.m
stft.m
Helicopter Rotor Blades:
RotorBladesTheory.m
RadarRectBladeReturns.m
rcs_rect.m
XConvention.m
stft.m
Heavy Top Precession:
TopDynamic.m
EulerTransfMatrix.m
RadarTopReturns.m
cylinder3.m
rcscircplate.m
rcsfrustum.m
circularplate.m
XConvention.m
stft.m
Chapter 4:
Illustrate examples of non-rigid body motion, simulations of radar returns
from non-rigid body motions, and corresponding micro-Doppler signatures.
Global Human Waking:
HumanWalkingModel.m
GlobalHumanWalk.m
RadarReturnsFromWalkingHuman.m
XYZConvention.m
rcsellipsoid.m
ellipsoid2P.m
cylinder2P.m
stft.m
Bird Flapping:
BirdFlapping.m
RadarBirdReturns.m
rcsellipsoid.m
ellipsoid2P.m
stft.m