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MIMO-employed coherent photonic-radar (MIMO-Co-PHRAD) for detection and ranging

机译:用于检测和测距的MIMO-采用的相干光子雷达(MIMO-CO-PHRAD)

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摘要

Recently, the photonics-radar technology comes out as an attractive candidate in the arena of smart autonomous transportation, surveillance, and navigation-related applications owing to provide wide-spectra to attain improved and precise radar-resolutions. On the other hand, microwave radars, due to limited bandwidth, are incapable of coping with the demands of next-generation radar technology. Moreover, the atmospheric fluctuations become more prominent at higher frequencies and affect the radar's performance significantly. Subsequently, the authors develop a 2 x 2 multi-input multi-output (MIMO) employed linear frequency-modulated continuous-wave coherent photonic-radar system (MIMO-Co-PHRAD) using OptiSystem (TM) and MATLAB (TM) to attain a prolonged detection-range with an enhanced visibility. The developed MIMO-Co-PHRAD is investigated with heterodyne- and homodyne-detection approaches under weak-to-strong regimes of the atmospheric fluctuations like Rain and Fog. A comparison is also drawn for both the demonstrated MIMO-equipped laser-driven coherent photonic-radar systems. The performance of both the developed MIMO-Co-PHRAD systems is evaluated by measuring the intensity of reflected-echoes, signal-to-noise ratio, and range-Doppler patterns. A contrast with the single-input single-output coherent photonic-radar (SISO-Co-PHRAD) is also established to validate the robustness of the demonstrated MIMO-Co-PHRAD.
机译:最近,由于提供广频以获得改进和精确的雷达分辨率,光子学 - 雷达技术在智能自治运输,监控和与导航相关应用中的一个有吸引力的候选人。另一方面,由于带宽有限,微波雷达无法应对下一代雷达技术的需求。此外,大气波动在较高频率下变得更加突出,并显着影响雷达的性能。随后,作者使用OptiSystem(TM)和MATLAB(TM)开发2×2多输入多输出(MIMO)采用的线性频率调制的连续波干相干光子雷达系统(MIMO-CO-PHRAD)以获得长期检测范围,具有增强的可视性。在大气波动等弱势弱制度下,在雨和雾等弱势制度下调查开发的MIMO-Co-Pharad。还绘制了所证明的MIMO的激光驱动的相干光子雷达系统的比较。通过测量反射回波,信噪比和范围多普勒图案的强度来评估开发的MIMO-CO-PHRAD系统的性能。还建立了与单输入单输出相干光子雷达(SISO-CO-PHRAD)的对比度以验证显示的MIMO-CO-PHRAD的稳健性。

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