Good Code Sets from Complementary Pairs via Discrete Frequency Chips
Ravi Kadlimatti, Adly T. Fam

TL;DR
This paper introduces a novel method for constructing complementary code sets using discrete frequency-coding waveforms, enhancing immunity to frequency selective fading and enabling concatenation in time, with applications in MIMO radar.
Contribution
It proposes a new approach to generate good code sets with zero-sidelobe regions using DFCW waveforms satisfying symmetry and quasi-orthogonality, improving code diversity and performance.
Findings
Codes exhibit zero-sidelobe regions around the mainlobe.
Constructed code sets are quasi-orthogonal with small cross-correlation sidelobes.
Method enhances MIMO radar signal design.
Abstract
It is shown that replacing the sinusoidal chip in Golay complementary code pairs by special classes of waveforms that satisfy two conditions, symmetry/anti-symmetry and quazi-orthogonality in the convolution sense, renders the complementary codes immune to frequency selective fading and also allows for concatenating them in time using one frequency band/channel. This results in a zero-sidelobe region around the mainlobe and an adjacent region of small cross-correlation sidelobes. The symmetry/anti-symmetry property results in the zero-sidelobe region on either side of the mainlobe, while quasi-orthogonality of the two chips keeps the adjacent region of cross-correlations small. Such codes are constructed using discrete frequency-coding waveforms (DFCW) based on linear frequency modulation (LFM) and piecewise LFM (PLFM) waveforms as chips for the complementary code pair, as they satisfy…
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