Journal of Radio Electronics. eISSN 1684-1719. 2024. №6

Contents

Full text in Russian (pdf)

Russian page

 

 

DOI: https://doi.org/10.30898/1684-1719.2024.6.12

 

 

 

Noise immunity of coherent reception

of binary signals with an envelope

of the raised cosine type

in a hydroacoustic communication channel

 

V.E. Denisov

 

RTU MIREA, 119454, Moscow, Vernadsky Ave, 78

 

The paper was received July 27, 2023.

 

Abstract. Goals: The main purpose of this work is to develop a methodology for determining the parameters of binary signals, at which the signals become relatively invariant to frequency distortions in the marine environment. The frequency distortion of the signals is caused by the uneven frequency response of the attenuation of the marine environment. The main part of this technique is to assess the effect of frequency distortion of signals on the noise immunity of reception. In accordance with this, the error probabilities of signal receivers with various types of manipulation are determined, which are optimal in the absence of distortion. Methods: The provisions of applied hydroacoustics, the theory of random processes and the theory of transmission of discrete messages are used. The main content: The paper considered a model of a single-beam hydroacoustic communication channel, characteristic of the deep sea, when the receiver or transmitter is located in the depths of the sea. The transmission coefficient of the channel is used as a transmission coefficient with a Gaussian amplitude -frequency response and a linear phase-frequency response. The error probabilities of coherent receivers of binary signals with amplitude, frequency and phase manipulation with an envelope of the raised cosine type are determined. Coherent receivers optimal by the criterion of maximum likelihood under the action of white Gaussian noise and the absence of distortion in the marine environment are considered as receivers. A logarithmic measure of increasing the probability of error is introduced, which characterizes the deterioration of noise immunity due to frequency distortions in the channel. For some typical cases, the values of signal parameters that are relatively invariant to frequency distortions in the marine environment are determined. Results: Expressions of the error probability of coherent receivers of binary signals with amplitude, frequency and phase manipulation with an envelope of the raised cosine type are found. A logarithmic measure of the relative increase in the probability of error compared to the case of no distortion is introduced. The functional dependence of this measure on the duration of sending the signal, the carrier frequency and the initial phase of the signal, as well as on the communication range and the signal-to-noise ratio is determined. On the plane of the carrier frequency, signal duration, for each type of signal, the boundary of the region above which the signals are relatively invariant to frequency distortions in the marine environment is constructed, a comparison is made with the case of signals with a sinusoidal envelope. For communication ranges R = 1.5 km and 3 km and typical carrier frequencies, the minimum values of the duration of invariant signals are given. Expressions of the error probability of coherent receivers of binary signals with amplitude, frequency and phase manipulation with an envelope of the raised cosine type are found. A logarithmic measure of the relative increase in the probability of error compared to the case of no distortion is introduced. The functional dependence of this measure on the duration of sending the signal, the carrier frequency and the initial phase of the signal, as well as on the communication range and the signal-to-noise ratio is determined. On the plane of the carrier frequency, signal duration, for each type of signal, the boundary of the region above which the signals are relatively invariant to frequency distortions in the marine environment is constructed, a comparison is made with the case of signals with a sinusoidal envelope. For communication ranges R = 1.5 km and 3 km and typical carrier frequencies, the minimum values of the duration of invariant signals are given.

Key words: hydroacoustic communication channel, attenuation coefficient, noise immunity, error probability, communication range, duration of signal sending, carrier frequency, initial phase, sinusoidal envelope, the envelope of the raised cosine type.

Corresponding author: Denisov Valery Evgenievich, dvemirea@mail.ru

 

References

1. Denisov V. E. Noise immunity of coherent reception of binary signals with a rectangular envelope in a hydroacoustic communication channel // Journal of Radio Electronics. – 2022. – No. 8. – pp. 1-24. https://doi.org/10.30898/1684-1719.2022.8.2

2. Denisov V. E. Noise immunity of coherent reception of binary signals with a sinusoidal envelope in a hydroacoustic communication channel // Journal of Radio Electronics. – 2023. – No. 3. – pp. 1-26. https://doi.org/10.30898/1684-1719.2023.3.3

3. Matvienko V. N., Tarasyuk Yu. F. Range of hydroacoustic means // Shipbuilding. – 1981. – 205 p.

4. Denisov V.E. Approximation of the amplitude-frequency characteristics of a hydroacoustic communication channel based on a set of quality indicators. // 56th MIREA Scientific and Technical Conference: Sat. tr. M.: MIREA. 2007. Part 2. pp. 71-76.

5. Fink L.M. Theory of transmission of discrete messages // Soviet radio. – 1970. – 728 p.

6. Denisov V.E., Bachurin V.A. Analysis of distortions of a high-frequency acoustic pulse with an envelope of the raised cosine type in the marine environment based on the energy criterion. // 61st MIREA Scientific and Technical Conference: Sat. tr. M.: MIREA, 2012. Part 3. pp. 16-20.

7. Denisov V.E. Correlation between the input and output signals of a hydroacoustic communication channel with an input signal in the form of a high-frequency pulse with a rectangular envelope. // Actual problems and prospects of development of radio engineering and infocommunication systems «RADIOINFOCOM-2015» – 2015. – pp. 98-103.

8. Denisov V. E. Correlation between binary FM signals at the input and output of the hydroacoustic communication channel // Actual problems and prospects of development of radio engineering and infocommunication systems «RADIOINFOCOM-2017» – 2017. – pp. 7-12.

For citation:

Denisov V.E. Noise immunity of coherent reception of binary signals with an envelope of the raised cosine type in a hydroacoustic communication channel. // Journal of Radio Electronics. – 2024. – №. 6. https://doi.org/10.30898/1684-1719.2024.6.12 (In Russian)