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Advances in Communication Systems: Theory and Applications, Volume 3 focuses on feedback systems, data compression, satellite communications, decoding techniques, and synchronization. The selection first elaborates on sequential signal design for channels with feedback and adaptive data compression for video signals. Discussions focus on theory and application of an adaptive compression system, feedback systems with an average power constraint, and a time-continuous binary system with peak and average power constraints. The text then ponders on the aspects of communications satellite systems, including communications satellites and modulation methods. The manuscript takes a look at advances in threshold, signal design problem of coding and synchronization, and progress in sequential decoding. Topics include Wozencraft sequential decoding algorithm, phased-locked loop approach, rapid acquisition sequences, and optimality of the square-wave correlation function for the first-order loop. The selection is a vital source of data for researchers interested in feedback systems, satellite communications, synchronization, and decoding techniques.
A new approach to the analysis of satellite imagery is presented. The central part of this approach is an algorithm which compresses information stored in the ordinary six or eight bits per picture element into only one bit. The quality of this compression is demonstrated by examples of its application to high resolution visual imagery. Both visual inspection and rms difference criterion are used for this evaluation. There are four objectives of this report which are: to review the status of processing techniques which remove redundant information, to show the need for redundance reduction in the processing of satellite images, to present the development of an algorithm for reducing it, and to show results obtained by application of the algorithm to visual imagery. Also, comments are made on needed developments of the technique and its potential application to problems of analysis of satellite imagery data. (Author).