The design of a pulse-position modulated optical communication system
Narrow width pulse-position modulated optical communication system design, determining performance in terms of error probability and information rates
Engineering topics
Publications and source records attributed to Gagliardi, R. M..
Narrow width pulse-position modulated optical communication system design, determining performance in terms of error probability and information rates
Pure synchronization techniques utilizing direct and heterodyne detection and pulsed lasers for optical communication systems
M-ary detection for optical communication investigated for maximum likelihood detection of one of M Poisson processes in background noise
Synchronization techniques for optical communication systems, including heterodyne detection, pulsed lasers, and PPM systems
Design of pulse position modulation optical communication system
Error probabilities for maximum signal detection in presence of Poisson noise
Radiation models using discrete radiator ensembles having applications to analysis of forward and backscatter from rough surfaces, clutter and chaff models, etc
Optical communications - maximum likelihood detection of M-ary Poisson processes in background of additive Poisson noise