Zugriffsnummer 50187
Dokumenttyp Zeitschriftenartikel
Peer Review mit Peer Review
Sprache Englisch
Titel Analysis of bandwidth reduction and resolution improvement for photonics-assisted ADC
Autor(in); Institution
Mandalawi, Younus; Technische Universität Braunschweig, THz Photonics Group, Braunschweig, GERMANY
Meier, Janosch; Technische Universität Braunschweig, THz Photonics Group, Braunschweig, GERMANY
Singh, Karanveer; Technische Universität Braunschweig, THz Photonics Group, Braunschweig, GERMANY
Hosni, Mohamed I.; Technische Universität Braunschweig, THz Photonics Group, Braunschweig, GERMANY
De, Souvaraj; 2.2, Hochfrequenz und Felder, PTB-Braunschweig
Schneider, Thomas; Technische Universität Braunschweig, THz Photonics Group, Braunschweig, GERMANY
Quelle/Jahr Journal of Lightwave Technology: 41 (2023), 19, 6225 - 6234
ISSN 0733-8724 (print) ; 1558-2213 (online)
DOI
Verlag New York, NY: IEEE
Freie Schlagworte Effective number of bits ; Optical sampling ; Photonics-assisted analog-digital conversion ; Timing jitter ; Optical frequency comb
Zusammenfassung To keep pace with increasing data rates in the worldwide communication networks and the increased bandwidths requirements in measurement devices, sensors, radar, and many other applications, photonics-assisted analog-to-digital converters (PADCs) may be promising alternatives to circumvent the bandwidth bottleneck in pure electronic analog-to-digital converters (EADCs). Here we analyze optical sub-Nyquist orthogonal sampling with sinc-pulse sequences for the time-interleaving of high-bandwidth input signals into parallel low-bandwidth sub-signals (first sampling stage). These sub-signals are then detected and further processed with low-bandwidth electronic devices in parallel branches (second sampling stage). Orthogonal sampling with ideal devices is error-free. Additionally, in contrast to electronic sample and hold circuits, the first sampling stage is based on a multiplication and not a switching. Therefore, it adds no aperture jitter and the low jitter of today's oscillators can be directly transferred to the sampling of high-bandwidth signals. Compared to the direct detection, in simulations and a proof of concept experimental demonstration, we show around 8.5 dB signal-to-noise and distortion (SINAD) and 1.4 bit effective number of bits (ENOB) improvement for the detection of a 14.5 GHz signal with the proposed method in a three-branch system. With further simulations we analyze the possibilities and limits of the method and derive an equation for the resolution. In a nine-branch system with a jitter of 10 fs for the oscillator and 100 fs for the electronics, 100 GHz input signals can be processed with a resolution of 6 bit in 11 GHz electronics, for instance. The scheme is only based on a modulator and standard RF equipment. Therefore, integration into a single chip, together with the following electronic ADCs is straightforward.
Themenbereich der Metrologie Elektrizität und Magnetismus
Forschungsprojekt Meteracom
Förderinformationen (1) Förderername: Deutsche Forschungsgemeinschaft (DFG)
Förderer ID: 0000 0001 2096 9829
Förderer ID Typ: ISNI
Titel der Förderung: Meteracom: Metrology for THz Communications

Zitierung

Mandalawi, Y., Meier, J., Singh, K., Hosni, M. I., De, S., & Schneider, T. (2023). Analysis of bandwidth reduction and resolution improvement for photonics-assisted ADC. Journal of Lightwave Technology, 41(19), 6225–6234. https://doi.org/10.1109/JLT.2023.3279876

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