Radiometric Characterization of a Water-Based Conical Blackbody Calibration Target for Millimetre-Wave Remote Sensing

K. Jacob, A. Schröder, A. Murk, L. von Werra, F. Reinhard, P. Raisin
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Abstract

In this work we describe the design and present radiometric measurements of a water-based conical blackbody calibration target prototype to be applied as a precise reference source in laboratories and for the accurate calibration of ground-based microwave instruments. The aqueous calibration target circumvents the conflict between the electromagnetic and thermal properties of traditional calibration target geometries. The temperature controllable target prototype consists of a conical low loss plastic shell which has been manufactured using a stereolithography 3D-printer to define the water surface. Radiometric measurements at 110 GHz demonstrate the outstanding thermal performance of the target prototype at various water temperatures between 10 °C and 60 °C.
水基锥形黑体毫米波遥感标定目标的辐射特性研究
在这项工作中,我们描述了一个水基锥形黑体校准目标原型的设计和目前的辐射测量,该目标原型将作为实验室的精确参考源和地面微波仪器的精确校准。水相标定靶避开了传统标定靶几何形状的电磁特性和热特性之间的冲突。温度可控的目标原型由一个锥形低损耗塑料外壳组成,该外壳是用立体光刻3d打印机制造的,以确定水面。110 GHz的辐射测量表明,在10°C至60°C的不同水温下,目标原型具有出色的热性能。
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