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タイトルAdaptive Detector Arrays for Optical Communications Receivers
本文(外部サイト)http://hdl.handle.net/2060/20040191348
著者(英)Vilnrotter, V.; Srinivasan, M.
著者所属(英)Jet Propulsion Lab., California Inst. of Tech.
発行日2000-05-15
言語eng
内容記述The structure of an optimal adaptive array receiver for ground-based optical communications is described and its performance investigated. Kolmogorov phase screen simulations are used to model the sample functions of the focal-plane signal distribution due to turbulence and to generate realistic spatial distributions of the received optical field. This novel array detector concept reduces interference from background radiation by effectively assigning higher confidence levels at each instant of time to those detector elements that contain significant signal energy and suppressing those that do not. A simpler suboptimum structure that replaces the continuous weighting function of the optimal receiver by a hard decision on the selection of the signal detector elements also is described and evaluated. Approximations and bounds to the error probability are derived and compared with the exact calculations and receiver simulation results. It is shown that, for photon-counting receivers observing Poisson-distributed signals, performance improvements of approximately 5 dB can be obtained over conventional single-detector photon-counting receivers, when operating in high background environments.
NASA分類Optics
レポートNOTMO-PR-42-141
権利No Copyright


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