2002Unpublished venueRequires access

Threshold detection performance of GMSK signal with BT=0.5

G.L. Lui

Open publisher page 12 citations

Abstract

This paper considers the detection performance of a serial thresholding receiver for precoded binary GMSK signal with BT=0.5. The conditional symbol (bit) error probability of the GMSK signal with carrier phase and timing errors is derived and compared to that of unfiltered BPSK. It is shown that the GMSK signal has practically the same performance as the ideal BPSK signal in the absence of sync errors and that the GMSK signal is more sensitive to carrier phase error but much more robust to symbol timing error than is the BPSK signal.

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What this paper is about

This paper considers the detection performance of a serial thresholding receiver for precoded binary GMSK signal with BT=0.5. The conditional symbol (bit) error probability of the GMSK signal with carrier phase and timing errors is derived and compared to that of unfiltered BPSK. It is shown that the GMSK signal has practically the same performance as the ideal BPSK signal in the absence of sync errors and that the GMSK signal is more sensitive to carrier phase error but much more robust to symbol timing error than is the BPSK signal.

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OpenAlex reports 12 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

This paper considers the detection performance of a serial thresholding receiver for precoded binary GMSK signal with BT=0.5. The conditional symbol (bit) error probability of the GMSK signal with carrier phase and timing errors is derived and compared to that of unfiltered BPSK. It is shown that the GMSK signal has practically the same performance as the ideal BPSK signal in the absence of sync errors and that the GMSK signal is more sensitive to carrier phase error but much more robust to symbol timing error than is the BPSK signal.

Key concepts: Minimum-shift keying, Phase-shift keying, SIGNAL (programming language), Computer science, Detection theory, Bit error rate, Electronic engineering, Algorithm

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