Feedback control systemsSee also what's at your library, or elsewhere.
Broader terms:Related term:Narrower terms:Used for:- Feedback mechanisms
- Feedback systems
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Filed under: Feedback control systems Feedback Systems: An Introduction for Scientists and Engineers (Princeton and Oxford: Princeton University Press, c2008), by Karl J. Åström and Richard M. Murray (PDF at Caltech) Synthesis of Feedback Systems (New York and London: Academic Press, 1963), by Isaac M. Horowitz (page images at HathiTrust) Fundamental Limitations in Filtering and Control, by M. Seron, J. Braslavsky, and Graham C. Goodwin (PDF in Australia) The mathematical theory of linear systems. (Wiley, 1961), by B. M. Brown (page images at HathiTrust) A comparative study of three techniques of student feedback in television teaching: the effectiveness of an electrical signal feedback system. ([Washington?, 1961), by Dale Wolgamuth (page images at HathiTrust) Analysis and design of feedback control systems : formerly, Servomechanism analysis (McGraw-Hill, 1960), by George J. Thaler and R. G. Brown (page images at HathiTrust) Linear control systems. (International Textbook Co., 1963), by Edwin C Barbe (page images at HathiTrust) Synthesis of optimum control systems / [by] Sheldon S.L. Chang. - (McGraw-Hill, 1961), by Sheldon S. L. Chang (page images at HathiTrust) Dynamic analysis and feedback control. (McGraw-Hill, 1962), by Ernest O. Doebelin (page images at HathiTrust) Digital processes for sampled data systems. (Wiley, 1962), by Alfred J. Monroe (page images at HathiTrust) Sampled-data control systems (McGraw-Hill, 1958), by John Ralph Ragazzini and Gene F. Franklin (page images at HathiTrust) Basic feedback control system design / C. J. Savant. (McGraw-Hill, 1958), by C. J. Savant (page images at HathiTrust) Feedback control systems. (McGraw-Hill, 1958), by Otto Joseph Mitchell Smith (page images at HathiTrust) Analysis and design of nonlinear feedback control systems (McGraw-Hill, 1962), by George J. Thaler and Marvin P. Pastel (page images at HathiTrust) Adaptive control systems (McGraw-Hill, 1961), by Eli Mishkin and Ludwig Braun (page images at HathiTrust) An introduction to sampled data and switching logic. (For sale by the Superintendent of Documents, U.S. Govt. Print. Off., 1966), by Thomas L. Davis (page images at HathiTrust) Modeling of plant protection and control systems for SSC (U.S. Nuclear Regulatory Commission ;, 1980), by Mohsen Khatib-Rahbar, U.S. Nuclear Regulatory Commission, and Brookhaven National Laboratory. Department of Nuclear Energy. Code Development and Verification Group (page images at HathiTrust) Specification and data presentation in linear control systems; [final report (U.S. Air Force, Air Force Missile Development Center, Holloman Air Force Base, 1960), by Purdue University. School of Electrical Engineering and J. E. Gibson (page images at HathiTrust) The theory and application of linear optimal control (Cornell Aeronautical Laboratory, 1965), by E. G. Rynaski and Richard F. Whitbeck (page images at HathiTrust; US access only) The analysis and compensation of nonlinear sampled-data feedback systems. (Division of Electrical Engineering, Electronics Research Laboratory, University of California, 1958), by Francis Joseph Mullin, United States. Air Force. Office of Scientific Research, and Berkeley. Electronics Research Laboratory University of California (page images at HathiTrust) Application of optimal linear control theory to the design of aerospace vehicle control systems (Cornell Aeronautical Laboratory, Inc., 1963), by Philip Auten Reynolds and E. G. Rynaski (page images at HathiTrust; US access only) Optimal pseudo-derivative-feedback control (Ulsoy, 1975), by Ali Galip Ulsoy (page images at HathiTrust; US access only) On adaptive control systems (Brooklyn, 1959), by Ludwig Braun and John G. Truxal (page images at HathiTrust) SSB(N) quiet steering system study (Phase I). (Newport News Shipbuilding and Dry Dock Co., 1962), by Samuel Arundale Tatum (page images at HathiTrust) Introduction to feedback systems. (Wiley, 1961), by L. Dale Harris (page images at HathiTrust) Total energy-rate feedback for automatic glide-slope tracking during wind-shear penetration (National Aeronautics and Space Administration, Scientific and Technical Information Branch ;, 1985), by Christine M. Belcastro, Aaron J. Ostroff, and Langley Research Center (page images at HathiTrust) A Method for obtaining reduced-order control laws for high-order systems using optimization techniques (National Aeronautics and Space Administration, Scientific and Technical Information Branch ;, 1981), by Vivek Mukhopadhyay, Irving Abel, Jerry R. Newsom, United States. National Aeronautics and Space Administration. Scientific and Technical Information Branch, and Langley Research Center (page images at HathiTrust) Applications of rate diagrams to the analysis and design of a class of on-off control systems. (National Aeronautics and Space Administration, 1966), by Ralph C. Lake, United States National Aeronautics and Space Administration, and University of Tennessee (Knoxville campus) (page images at HathiTrust) A digital computer program for the analysis and design of state variable feedback systems. (Prepared by the University of Arizona for National Aeronautics and Space Administration, 1967), by James L. Melsa, United States National Aeronautics and Space Administration, and University of Arizona (page images at HathiTrust; US access only) Time-optimal response of feedback control systems by means of discontinuous rate compensation (National Aeronautics and Space Administration, 1967), by Richard J. Levesque (page images at HathiTrust; US access only) NASA TN D-5743 (National Aeronautics and Space Administration ; [For sale by the Clearinghouse for Federal Scientific and Technical Information, Springfield, Virginia 22151], 1970), by William A. Wolovich, Electronics Research Center (U.S.), and United States National Aeronautics and Space Administration (page images at HathiTrust; US access only) NASA TN D-5745 (National Aeronautics and Space Administration ; [For sale by the Clearinghouse for Federal Scientific and Technical Information, Springfield, Virginia 22151], 1970), by James A. Gatlin, Goddard Space Flight Center, and United States National Aeronautics and Space Administration (page images at HathiTrust; US access only) Decoupling in linear time-varying multivariable systems (National Aeronautics and Space Administration ;, 1973), by Viswanathan Sankaran and Langley Research Center (page images at HathiTrust) The effect of digital computing on the performance of a closed-loop control-loading system (National Aeronautics and Space Administration :, 1976), by Russell V. Parrish, Billy R. Ashworth, and United States National Aeronautics and Space Administration (page images at HathiTrust) Some aspects of optical feedback with cadmium sulfide and related photoconductors (National Aeronautics and Space Administration ;, 1974), by S. J. Katzberg and Langley Research Center (page images at HathiTrust) Dynamics of mechanical feedback-type hydraulic servomotors under inertia load (National Advisory Committee for Aeronautics, 1952), by Harold Gold, Victor L. Ransom, Edward W. Otto, and United States. National Advisory Committee for Aeronautics (page images at HathiTrust) Adaptive sampling in digital control (Ames Laboratory, 1964), by Kenneth Allen McCollom, R. M. Stewart, U.S. Atomic Energy Commission, and Ames Laboratory (page images at HathiTrust) Telemaze : a feedback control system for the remote positioning of a distant exploratory vehicle (Dept. of Computer Science, University of Illinois at Urbana-Champaign, 1974), by Edward James Pott and University of Illinois at Urbana-Champaign. Deptartment of Computer Science (page images at HathiTrust) Stability study of pulse-width-modulated and nonlinear sampled-data systems (1961), by T. Nishimura (page images at HathiTrust; US access only) The analysis of nonlinear feedback sampled-data systems (1961), by Mangalore Anantha Pai (page images at HathiTrust; US access only) An improved feedback radiometer (L.G. Hanscom Field, Bedford, Massachusetts : Air Force Cambridge Research Laboratories, Office of Aerospace Research, United States Air Force, 1966., 1966), by William B. Goggins and Air Force Cambridge Research Laboratories (U.S.) (page images at HathiTrust) The EBR-II feedback function (Argonne, Illinois : Argonne National Laboratory, 1968, 1968), by R. W. Hyndman, Robin Nicholson, and Argonne National Laboratory (page images at HathiTrust) Integrated instruments : a roll and turn indicator (Wright-Patterson Air Force Base, Ohio : Wright Air Development Center, Air Research and Development Command, United States Air Force, 1957., 1957), by Harold E. Bamford, Malcolm L. Ritchie, United States. Air Force. Air Research and Development Command, Human Factors and Ergonomics Collection, Wright Air Development Center, and University of Illinois (page images at HathiTrust) Real-time optimal control and differential game aircraft control algorithms for one-on-one combat (Wright-Patterson Air Force Base, Ohio : Flight Dynamics Laboratory, Air Force Wright Aeronautical Laboratories, Air Force Systems Command, United States Air Force, 1982., 1982), by Gerald M. Anderson, Air Force Wright Aeronautical Laboratories, Air Force Flight Dynamics Laboratory (U.S.), and Orincon Corporation (page images at HathiTrust) Sensitivity and modal response for single-loop and multiloop systems (Wright-Patterson Air Force Base, Ohio : Flight Control Laboratory, Aeronautical Systems Division, Air Force Systems Command, United States Air Force, 1963., 1963), by Duane T. McRuer, Robert L. Stapleford, United States. Air Force. Systems Command. Aeronautical Systems Division, and Inc Systems Technology (page images at HathiTrust) Active feedback interaction with a shear layer (Bolling Air Force Base, D.C. : Air Force Office of Scientific Research, Air Research and Development Command, United States Air Force, 1987., 1987), by Paul E. Dimotakis, M. M. Koochesfahani, California Institute of Technology. Graduate Aeronautical Laboratories, and United States. Air Force. Office of Scientific Research (page images at HathiTrust) Quantitative feedback theory (QFT) : technique for designing multivariable control systems (Wright-Patterson AFB, Ohio : Flight Dynamics Laboratory, Air Force Wright Aeronautical Laboratories, Air Force Systems Command, [1987], 1987), by Constantine H. Houpis, Isaac M. Horowitz, Air Force Wright Aeronautical Laboratories, and Air Force Flight Dynamics Laboratory (U.S.) (page images at HathiTrust)
Filed under: Feedback control systems -- Computer programs
Filed under: Feedback control systems -- Design and construction
Filed under: Feedback control systems -- Dynamics
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