We propose a new method to measure the system noise temperature, Tsys, using a 2-bit analog-to-digital converter (ADC). The statistics of the digitized signal in a four-level quantization brings us information about the bias voltage and the variance, which reflects the power of the input signal. Comparison of the variances in {\it hot} and {\it sky} circumstances yields Tsys without a power meter. We performed test experiments using the Kagoshima 6-m radio telescope and a 2-bit ADC to verify this method. Linearity in the power-variance relation was better than 99% within the dynamic range of 10 dB. Digitally measured Tsys coincided with that of conventional measurement with a power meter in 1.8-% difference or less for elevations of 10∘−88∘. No significant impact was found by the bias voltages within the range between -3.7 and +12.8% with respect to the threshold voltage. The proposed method is available for existing interferometers that have a multi-level ADC, and release us from troubles caused by power meters.
@article{arxiv.1009.0577,
title = {A New System Noise Measurement Method Using a 2-bit Analog-To-Digital Converter},
author = {Aki Nakatake and Seiji Kameno and Koji Takeda},
journal= {arXiv preprint arXiv:1009.0577},
year = {2015}
}
Comments
to appear in the Publications of the Astronomical Society of Japan, Vol.62, No.5; 12 pages, 6 figures