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On the Error Probability of Noisy Phase Channels Using Mfsk

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This article is published in Convention of Electrical and Electronics Engineers in Israel.The article was published on 1989-03-07. It has received 6 citations till now.

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Journal ArticleDOI

Time diversity in DPSK noisy phase channels

TL;DR: The optimum design of the diversity level is discussed and it is concluded that power efficient transmission is feasible even at bit rates comparable with the signal linewidth.
Journal ArticleDOI

An upper bound on the error probability of quadratic-detection in noisy phase channels

TL;DR: A rigorous method to find the upper bound of the error probability of noncoherent quadratically detected signals in the presence of both additive white Gaussian noise and Brownian carrier phase noise is presented and enables the analysis of interchannel crosstalk effects in frequency-division multiplexing systems.
Journal ArticleDOI

Performance bounds for noncoherent detection under Brownian phase noise

TL;DR: The authors present a novel class of upper and lower bounds on the error probability of a binary hypothesis test, comprising quadratic forms of the additive noise and of the filtered noisy-phase signal plus noise, comprising the tightest possible error bounds for the given set of generalized moments.

M-ary FSK performance for coherent optical communication systems using semiconductor lasers

TL;DR: When performance is not crosstalk limited, M -ary FSK is found to perform better than binary FSK with the same system bandwidth constraints, as would be predicted if ideal lasers are used.
References
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Journal ArticleDOI

Noncoherent detection of coherent lightwave signals corrupted by phase noise

TL;DR: Large amounts of phase noise can be accommodated with only minor increases in required signal-to-noise ratio when the receiver parameters decision threshold is optimized and the bit rate is moderate compared to the laser linewidth.
Journal ArticleDOI

Characterizing filtered light waves corrupted by phase noise

TL;DR: The authors show, for example, how to generate probability density functions of the magnitude of a filtered laser tone and how to analytically represent the characteristic function of the PDF in closed form in the small-phase-noise realm.
Journal ArticleDOI

Coherent lightwave communications

Jack Salz
TL;DR: A comprehensive treatment applicable to a wide variety of coherent receiver designs under a broad range of conditions is provided and models and analytical tools are developed in sufficient detail to encompass a wide range of applications.
Journal ArticleDOI

Error Probabilities for Binary Symmetric Ideal Reception through Nonselective Slow Fading and Noise

TL;DR: In this paper, the probability of committing an error in making such a guess is derived for both coherent and non-coherent receivers; these are studied in detail, and some general trends and system design considerations are noted.
Journal ArticleDOI

Probability of error for quadratic detectors

TL;DR: In this paper, a procedure is presented for evaluating the performance of a general class of digital detectors which square or multiply signal waves contaminated by gaussian noise, and the results are of importance not only in detection theory but also in general statistical analysis of rare events.
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