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In this paper, we describe the design of a ground-based 1.35 cm-band radiometer for remotesensing atmospheric water vapor. An instrument that meets the requirements of both preci-sion and stability is introduced in detail. The results observed during the first three monthsof the operation are in good agreement with radiosonde results.
In this paper, we describe the design of a ground-based 1.35 cm-band radiometer for remotesensing atmospheric water vapor. An instrument that meets the requirements of both preci-sion and stability is introduced in detail. The results observed during the first three monthsof the operation are in good agreement with radiosonde results.