Modern Navigation, Guidance, and Control Processing, Volume 2
This work offers detailed information on the modelling, design, analysis, simulation and evaluation (MDASE) of advanced navigation, guidance and control (NGC) systems. The book emphasizes the practical applications of advanced systems and discusses approaches to designing.
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Modern Multivariate Control Analysis
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accelerometers accuracy adjoint advanced NGC aircraft algorithm altitude analysis antenna applications approach approximate autopilot bandwidth bias clutter command guidance components constant control system control theory coordinates covariance matrix CPNG defined Doppler dynamics effective noise effective slope Equation example feedback frequency GDOP gimbal gimbal angle glint noise guidance filter guidance law guidance system gyro implementation inertial input integrated intercept Kalman filter launch linear measurement midcourse guidance miss distance Monte Carlo navigation system NGC system nonlinear obtained optimal control optimal guidance law output parameters performance perturbation phase problem pursuer radar radome error radome slope range robustness root locus seeker semiactive sensitivity sensor shown in Figure signal simulation singular value stability strapdown system design target acceleration target maneuver target tracking techniques TERCOM terminal guidance tracker trajectory transfer function variables vector vehicle velocity weapon white noise Zarchan zero