2002•Unpublished venueRequires access

Time sidelobe reduction technique for binary phase coded pulse compression

Reiji Sato, Masanori Shinriki

Open publisher page 6 citations

Abstract

A simple, easy to implement technique is presented that can significantly reduce the time sidelobes of the binary pulse compression codes. It is revealed that the peak sidelobe level (PSL) can be drastically reduced by the new technique compared with the conventional binary codes when the compression ratio is from about 5 to 16. Furthermore, the signal-to-noise ratio after compression, the appropriate IF bandwidth and the Doppler tolerance for the new technique are estimated by simulation.

About this research paper

What this paper is about

A simple, easy to implement technique is presented that can significantly reduce the time sidelobes of the binary pulse compression codes. It is revealed that the peak sidelobe level (PSL) can be drastically reduced by the new technique compared with the conventional binary codes when the compression ratio is from about 5 to 16. Furthermore, the signal-to-noise ratio after compression, the appropriate IF bandwidth and the Doppler tolerance for the new technique are estimated by simulation.

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OpenAlex reports 6 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

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Method / approach

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Main findings

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Available abstract

A simple, easy to implement technique is presented that can significantly reduce the time sidelobes of the binary pulse compression codes. It is revealed that the peak sidelobe level (PSL) can be drastically reduced by the new technique compared with the conventional binary codes when the compression ratio is from about 5 to 16. Furthermore, the signal-to-noise ratio after compression, the appropriate IF bandwidth and the Doppler tolerance for the new technique are estimated by simulation.

Key concepts: Pulse compression, Binary number, Bandwidth (computing), Computer science, Binary code, Compression ratio, Data compression, Compression (physics)

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