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The Next Generation of Spaceborne Rain Radars: Science Rationales and Technology Status

机译:下一代星载雨雷达:科学理论和技术地位

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Global rainfall is the primary distributor of latent heat through atmospheric circulation. This important atmospheric parameter can only be measured reliably from space. The on-going Tropical Rainfall Measuring Mission (TRMM) is the first space based mission dedicated to advance our understanding of tropical precipitation patterns and their implications on global climate and its change. The Precipitation Radar (PR) aboard the satellite is the first radar ever flown in space and has provided exciting, new data on the 3-D rain structures for a variety of scientific applications. The continuous success of TRMM has led to new development of the next generation of spaceborne satellites and sensors for global rainfall and hydrological parameter measurements. From science and cost efficiency prospective, these new sensing instruments are expected to provide enhanced capabilities and reduced consumption on the spacecraft resources. At NASA, the Earth Science Enterprise has strengthened its investment on instrument technologies to help achieving these two main goals and to obtain the best science values from the new earth science instruments. It is with this spirit that a notional instrument concept, using a dual-frequency rain radar with a deployable 5-meter electronically-scanned membrane antenna and real-time digital signal processing, is developed. This new system, the Second Generation Precipitation Radar (PR-2), has the potential of offering greatly enhanced performance accuracy while using only a fraction of the mass of the current TRMM PR. During the last two years, several of the technology items associated with this notional instrument have also been prototyped. In this paper, the science rationales, the instrument design concept, and the technology status for the PR-2 notional system will be presented.
机译:全球降雨是通过大气循环的潜热的主要经销商。这一重要的大气参数只能从空间可靠地测量。正在进行的热带降雨量衡量使命(TRMM)是第一个基于空间的特派团,致力于推进我们对热带降水模式的理解及其对全球气候的影响及其变革。卫星的降水雷达(PR)是卫星的第一次雷达在太空中飞行,并为各种科学应用提供了关于3-D雨结构的令人兴奋的新数据。 TRMM的不断成功导致了新的开发下一代星载卫星和全球降雨和水文参数测量的传感器。从科学和成本效率前瞻性,这些新的传感仪器都预计会提供增强的能力和对航天器资源的消费减少。在美国宇航局,地球科学企业加强了对仪器技术的投资,以帮助实现这两个主要目标,并从新地球科学仪器中获得最佳科学价值观。通过这种精神,一个名义仪器概念,使用双频雨雷达具有可展开的5米电子扫描膜天线和实时数字信号处理。这种新系统,第二代降水雷达(PR-2),具有在仅使用电流TRMM PR的质量的一小部分的同时提供大大提高的性能精度。在过去的两年中,与这个名义乐器相关的一些技术项目也已被原型。本文将介绍科学理论,仪器设计理念和PR-2名义系统的技术地位。

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