Statistical communication theory
Communication theory on discrete analysis of homomorphic deconvolution, and unity feedback of two state modulator configurations
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Communication theory on discrete analysis of homomorphic deconvolution, and unity feedback of two state modulator configurations
Decision making, communication theory, and space communications
Quantum mechanical communication theory of optimal receivers, using statistical detection and estimation theory
Communication theory applied to antenna systems - Fourier analysis, linear circuit theory, and aperture theory
Communication theory problems incorporating quantum effects for optical-frequency applications are discussed. Under suitable conditions, a unique quantum channel model corresponding to a given classical space-time varying linear random channel is established. A procedure is described by which a proper density-operator representation applicable to any receiver configuration can be constructed directly from the channel output field. Some examples illustrating the application of our methods to the development of optical quantum channel representations are given. Optimizations of communication system performance under different criteria are considered. In particular, certain necessary and sufficient conditions on the optimal detector in M-ary quantum signal detection are derived. Some examples are presented. Parameter estimation and channel capacity are discussed briefly.
Generalization of superposition principle of statistical communication theory & investigation of class of nonlinear systems
Research and scientific reports on statistical communication theory
Optimum signal reception using quantum-mechanical communication theory
Atmospheric turbulence effects reduction in optical communication by statistical communication theory, considering digital system and waveform estimation
Empirical Bayes technique applied in communication problems of random process signal detection
Space Communications: Theory and Applications is a four-volume bibliography compiled by the Federal Systems Division, IBM under contract to the National Aeronautics and Space Administration. It contains an extensive listing of references to reports, articles, and books on several subjects directly pertinent to the field of space communications. The compilers have endeavored to provide maximum coverage of the literature for the period 1958 through 1963. However, references to publications of unusual significance that appeared before 1958, as well as a limited number of 1964 references, have also been included. The bibliography has been prepared primarily for use by communications specialists engaged in technical activities related to the aerospace program. Each of the four volumes is complete in its coverage of specific subjects and is being published separately.
Monograph on state variable approach to continuous estimation of random processes with applications to analog communication theory
Quantum detectors, noise mechanisms, and application to optical communication theory
Approximate minimum mean square error estimates of Markovian state vector observed in nonlinearly imbedded stochastic signal, noting analog communication theory
Random processes, filtering, and telemetry problems in space communications theory
Modulator transfer functions for fixed and ramp input waveforms, and nonlinear homomorphic system for echo removal
An introduction is provided to the important ideas involved in the design and the evaluation of optical communication systems which transmit digital or analog data. Field representations are discussed together with background noise, a detector statistical model, quantum receivers, and turbulent and scatter channels. Free-space channels are considered, taking into account heterodyne systems, preamplifier and homodyne systems, direct-detection systems, and optimum quantum systems.
Annotated bibliography on satellite and deep space communications