Title :
Distortion Correction in a High-Resolution Time-Stretch ADC Scalable to Continuous Time
Author :
Sefler, George A. ; Chou, Jason ; Conway, Josh A. ; Valley, George C.
Author_Institution :
Electron. & Photonics Lab., Aerosp. Corp., El Segundo, CA, USA
fDate :
5/15/2010 12:00:00 AM
Abstract :
Distortions caused by system components and by fundamental physical phenomena can limit the performance of photonic time-stretch ADCs. Here we use a combination of time-stretch linearization & equalization, DC-offset subtraction, and operation in a linear propagation regime to improve the signal-to-noise-and-distortion ratio by 17 dB for a 2-channel time-stretch ADC testbed and therein obtain noise-limited performance of 6-7 ENOB over a 10-GHz RF input bandwidth. Time-stretch linearization & equalization corrects for dispersion mismatches among testbed components by applying time-shifts calculated from component group delays to output ADC samples. DC-offset subtraction removes static errors due to insertion loss imbalances and Mach-Zehnder modulator bias offsets. If optical power levels are too high, nonlinear fiber propagation lowers the frequencies of dispersion-induced nulls in the RF transfer function and causes higher-order signal distortions. The 2-channel testbed can be directly scaled to a practical continuous-time system with the addition of more sub-aperture wavelength channels (total of 13 channels and 42 nm of optical bandwidth for a 90 MHz laser repetition rate). Adaptive online and fixed pre-calibrated stitching methods are demonstrated for joining data from one wavelength channel to the next.
Keywords :
Mach-Zehnder interferometers; analogue-digital conversion; microwave photonics; optical distortion; optical information processing; DC-offset subtraction; Mach-Zehnder modulator bias offsets; RF transfer function; channel stitching; component group delays; dispersion mismatches; distortion correction; frequency 10 GHz; microwave photonics; nonlinear fiber propagation; photonic time-stretch analog-digital converters; signal-to-noise-and-distortion ratio; time-stretch equalization; time-stretch linearization; Analog-to-digital conversion; microwave photonics; optical analog link; optical signal processing; photonic time-stretch; photonic- assisted ADC;
Journal_Title :
Lightwave Technology, Journal of
DOI :
10.1109/JLT.2010.2043500