Radiation field angled horn antenna with a piezoceramic transducer with radial polarization
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Abstract
The numerical analysis of the acoustic properties of a cylindrical antenna with a flat acoustically soft baffle located in the diametral plane of its transmitter, made in the form of power or compensated structures was performed. Comparative analysis of the frequency characteristics of the sound fields and the angular distribution of the fields in the far field of the antenna allowed us to establish a number of subtle effects in the formation of fields depending on both the type of embodiment the transmitter of antenna and the size of the acoustical baffle. References 3, figures 7.
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References
Dіdkovskiy V. S., Poroshyn S. M., Leiko A. G., Leiko A. A., Drozdenko O.І. (2013), “Construction of electroacoustic instruments and systems for multimedia acoustic technology”. Kharkov. P. 390. (Ukr)
Gusak Z. T., Leiko A. G. (2014), “Physical fields of hydroacoustic antenna consisting of the angle of the horn and the piezoceramic transducer with a circumferential polarization”. Electronics and Communication. Vol. 19, №1, pp. 102-108. (Rus)
Leiko A.G., Dr.Sc., Nyzhnyk A.I., Starovoyt Y.I. (2013), “Acoustic properties of cylindrical piezoceramic emitters with power and compensated design with longitudinal and transverse piezoelectric effect” Electronics and Communication. Vol. 18, №6, pp. 62-73. (Rus)
Korzhik A.V. (2009), «Amplitude-frequency characteristics of some waveforms piezoceramic cylindrical sound receivers at various kinds elektrodirovaniya under bondage». Akustichny visnyk. Vol.12, No 3. pp.33 – 40. (Rus)
Korzhik A.V. (2009), «Phase-frequency characteristics of some waveforms piezoceramic cylindri-cal sound receivers at various kinds elektrodirovaniya under bondage». Akustichny visnyk. Vol.13, No 4. pp.29 – 33. (Rus)