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A GPS-Reflections Receiver That Computes Doppler/Delay Maps in Real Time

机译:实时计算多普勒/延迟图的GPS反射接收器

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This paper describes a new instrument that was specially designed and developed to gather Global Positioning System (GPS) signals after they have been reflected from suitable surfaces (sea, ice, and ground), for Earth remote sensing. The device has been called the GPS open-loop differential real-time receiver (GOLD-RTR). Its main and most innovative feature is its computation and storage, in real time, of complex-valued (I and Q) cross correlations (waveforms) between GPS L1-C/A signals - received directly and after reflection - and the corresponding models of these signals. Particularly, the GOLD-RTR schedules consecutive coherent integration time slots of 1 ms over which ten parallel correlation channels, with 64 lags each, work simultaneously and continuously with the input raw data sampled at 40 MHz. The total throughput is 10 000 waveforms per second, each waveform being 64 lags long. These real-time correlation resources can be flexibly distributed in several configurations according to the observational requirements, for instance: Doppler/delay maps or up to ten simultaneous reflected waveforms for ten different GPS satellites are examples of what can be done. The further processing of the real-time computed 1-ms waveforms in a flight campaign over the ocean, ice, or ground can be used to obtain geophysical parameters such as sea level and tides, sea surface mean-square slopes, ice roughness and thickness, soil moisture and biomass, or future applications. This paper covers the GOLD-RTR architecture and hardware, signal processing and data storage issues, machine-user interface, laboratory readiness tests, and waveform data samples from the first two jet aircraft campaigns at 9300 m over the sea
机译:本文介绍了一种专门设计和开发的新仪器,用于在从适当的表面(海,冰和地面)反射后收集全球定位系统(GPS)信号,以进行地球遥感。该设备被称为GPS开环差分实时接收器(GOLD-RTR)。它的主要和最创新的功能是实时计算和存储直接或反射后接收到的GPS L1-C / A信号之间的复数值(I和Q)互相关(波形)以及相应的这些信号。尤其是,GOLD-RTR安排了1 ms的连续相干积分时隙,在该时隙上,十个并行相关通道(每个具有64个滞后)与40 MHz采样的输入原始数据同时连续地工作。总吞吐量为每秒10000个波形,每个波形的长度为64个滞后。这些实时相关资源可以根据观察要求灵活地以几种配置进行分配,例如:多普勒/延迟图或十个不同GPS卫星的多达十个同时反射波形就是可以完成的示例。在海洋,冰层或地面上进行的飞行战役中实时计算的1毫秒波形的进一步处理可用于获取地球物理参数,例如海平面和潮汐,海面均方斜率,冰面粗糙度和厚度,土壤水分和生物量或未来的应用。本文介绍了GOLD-RTR的架构和硬件,信号处理和数据存储问题,机器用户界面,实验室准备情况测试以及在海上9300 m处的前两次喷气式飞机战役的波形数据样本

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