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Multi-static MIMO-SAR three dimensional deformation measurement system

机译:多静态MIMO-SAR三维变形测量系统

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摘要

Herein is proposed a novel high-steep rock slope landslide monitoring system based on the configuration of multi-static multiple-input multiple-output synthetic aperture radar (MIMO-SAR). In this system, three spastically distributed radars are employed. Each is a Ku-band MIMO-SAR, transmitting mutually orthogonal waveforms and sensing the slope movement from different view angles. The three radars can then achieve the deform measurements in the three line of sight (LOS) directions. After an effective fusion of these measurements, the deform vector, with direction and amount, can be resolved. This vector is particularly important for risk warning as well as for understanding the motion mechanism of landslide. Moreover, the data acquisition period can be largely reduced, since the use of MIMO radar allows a simultaneous sampling of the scene echo. The time decorrelation is therefore very small, and hence high measurement accuracy can be expected. It can be proved that, using this system, the three-dimensional accuracy can reach 0.1 ~ 1 mm. Simulations and experimental datasets are used to validate this proposal.
机译:在此基础上,提出了一种基于多静态多输入多输出合成孔径雷达(MIMO-SAR)结构的新型高陡岩质边坡滑坡监测系统。在该系统中,采用了三个空间分布的雷达。每个都是Ku波段MIMO-SAR,可传输相互正交的波形并从不同的角度感测斜率运动。然后,三个雷达可以在三个视线(LOS)方向上实现变形测量。在对这些测量值进行有效融合之后,可以解析变形矢量以及方向和数量。该矢量对于风险预警以及了解滑坡的运动机理特别重要。此外,由于使用MIMO雷达可以同时采样场景回波,因此可以大大缩短数据采集周期。因此,时间去相关非常小,因此可以期待很高的测量精度。可以证明,使用该系统,三维精度可以达到0.1〜1mm。仿真和实验数据集用于验证该建议。

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