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Journal ArticleDOI

Eye Pattern for the Binary Noncoherent Receiver

W. McGee
- 01 Oct 1971 - 
- Vol. 19, Iss: 5, pp 634-643
TLDR
The eye function for the binary quadratic receiver is derived by examining the "eye" pattern, which shows the effective reduction in signal amplitude caused by intersymbol interference.
Abstract
The assessment of imperfect channels in data transmission usually involves noise considerations. Channel imperfections are related to system performance by determining the increase in carrier-to-noise ratio required to maintain a fixed error rate. The impairment is determined by examining the "eye" pattern, which shows the effective reduction in signal amplitude caused by intersymbol interference. This paper derives the eye function for the binary quadratic receiver. The binary instantaneous frequency discriminator, the differential phase shift receiver, and the noncoherent frequencyshift keying (FSK) receiver implemented using the difference of two envelopes are binary quadratic receivers. The eye pattern is easily obtained by computation using the eye function.

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Citations
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Journal ArticleDOI

Digital Modulation in Rayleigh Fading in the Presence of Cochannel Interference and Noise

TL;DR: The error rate performance of several digital modulation methods in a fading environment and in the presence of one cochannel interference and AWG noise is analyzed and a unique formula emerges for different PSK systems.
Dissertation

Advanced Synchronization Techniques for Continuous Phase Modulation

Qing Zhao
TL;DR: This thesis is dedicated to the parents, Chongdoing Zhao and Fulan Yin, and the dear wife, Dawei, for their patience and love through all these years, which has been vital to all of my accomplishments.

Self-interference in OFDM-Based Systems: Identification and Separation

TL;DR: In this article, an interference spectrogram is developed in order to investigate several interferences with one diagram solely, such as inter-symbol interference (IS) due to insufficient guard time and ICI due to time variance in the channel.
References
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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.
Journal ArticleDOI

Error Rate Approximations for Differential Phase-Shift Keying

TL;DR: An analysis of the performance of a model of the Differential Phase Shift Keying (DPSK) system is presented and the exact expression for the probability of a binary digit error in a four-phase system is derived.
Journal ArticleDOI

Distribution of instantaneous frequency for signal plus noise

TL;DR: A concise formula is derived for the probability distribution of the instantaneous frequency of an arbitrary bandpass signal plus Gaussian noise, in terms of Marcum's Q -functions, with well-known properties.