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Direct Signal Enhanced Semicodeless Processing of GNSS Surface-Reflected Signals

机译:GNSS表面反射信号的直接信号增强半编码处理

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This paper presents an aircraft demonstration of direct-signal enhanced semicodeless processing of global navigation satellite systems (GNSS) signals reflected from the Earth’s surface. Comparisons are made between this new method and an interferometric approach to GNSS reflectometry. Results show that this technique produces waveforms with greater signal-to-noise compared with the interferometric approach for all GNSS signals currently in use or planned for the near future. Alternatively, the semicodeless technique can have similar performance with smaller antennas for lower hardware costs. The semicodeless approach also has the advantage that different signals along with their different surface spatial resolutions are processed separately, each signal’s coherent integration time can be optimized, and ground/aircraft experiments and tests are free of spurious signals. The signal processing demands of the semicodeless approach are shown to be proportional to the number of signal components processed when integrated with a GNSS precise orbit determination (POD) receiver.
机译:本文介绍了飞机演示如何对从地球表面反射的全球导航卫星系统(GNSS)信号进行直接信号增强的半编码处理。比较了这种新方法和GNSS反射法的干涉法。结果表明,与干涉法相比,该技术产生的波形具有更高的信噪比,可用于当前正在使用或计划在不久的将来使用的所有GNSS信号。可选地,无天线的半编码技术可以具有类似的性能,从而降低了硬件成本。半无码方法还具有以下优点:可以分别处理不同的信号及其不同的表面空间分辨率,可以优化每个信号的相干积分时间,并且地面/飞机实验和测试中不会包含杂散信号。当与GNSS精确轨道确定(POD)接收器集成在一起时,无半编​​码方法的信号处理需求与所处理的信号分量的数量成正比。

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