Increased frame rate for linear array imaging using novel frequency modulation scheme
Benjamin Raiton, Steven Freear
Abstract
Benjamin Raiton, Steven Freear
Abstract
The search for an increase in medical imaging frame rate has been on-going for decades. A number of coding techniques may be applied based on simultaneous transmission from multiple sub-apertures. Linear frequency modulated (LFM) signals or chirps is a coding technique with the ability to enhance the SNR but the coding diversity is limited, for example up chirp and down chirp. In this paper the cross-correlation properties are explored for the LFM and a closely related variant employing a sinusoidal frequency modulation (SFM). As well as offering a novel type of excitation, that behaves similarly to a standard chirp, the SFM also yields similar cross-correlation to chirps of opposite rate.
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The search for an increase in medical imaging frame rate has been on-going for decades. A number of coding techniques may be applied based on simultaneous transmission from multiple sub-apertures. Linear frequency modulated (LFM) signals or chirps is a coding technique with the ability to enhance the SNR but the coding diversity is limited, for example up chirp and down chirp. In this paper the cross-correlation properties are explored for the LFM and a closely related variant employing a sinusoidal frequency modulation (SFM). As well as offering a novel type of excitation, that behaves similarly to a standard chirp, the SFM also yields similar cross-correlation to chirps of opposite rate.
Key concepts: Chirp, Frequency modulation, Chirp spread spectrum, Coding (social sciences), Computer science, Modulation (music), Transmission (telecommunications), Decoding methods