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Terahertz-wave radars based on resonant-tunneling-diode oscillators

机译:基于谐振隧道二极管振荡器的太赫兹波雷达

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Several terahertz-wave radar techniques based on a resonant-tunneling-diode (RTD) oscillator are under investigation.First, an amplitude-modulated continuous-wave (AMCW) radar able to measure the absolute distance was achieved bydemodulating the wave returning from the target and measuring its phase, either by determining the time delay with anoscilloscope, or by using an IQ demodulator to determine the sine and cosine of the phase. Our current record with thistype of radar is a ranging error of 0.063 mm; however, it can only measure the distance up to a single reflecting surface.Second, a subcarrier frequency-modulated continuous-wave (FMCW) radar has been demonstrated to work and is expectedto allow the simultaneous ranging of several targets. The ranging error for this radar was found to be 0.73 mm.Additionally, a radar technique based on the swept source optical coherence tomography (SS-OCT) principle is proposed.Terahertz-wave 2D imaging can be combined with these radar techniques to obtain a 3D imaging system.
机译:正在研究几种基于谐振隧道二极管(RTD)振荡器的太赫兹波雷达技术。 首先,通过以下方法实现了能够测量绝对距离的调幅连续波(AMCW)雷达: 解调从目标返回的波并测量其相位,方法是使用 示波器,或使用IQ解调器确定相位的正弦和余弦。我们目前的记录 雷达类型的测距误差为0.063毫米;但是,它只能测量到单个反射面的距离。 其次,已证明副载波调频连续波(FMCW)雷达可以工作,并且有望 以便同时定位多个目标。该雷达的测距误差为0.73毫米。 此外,提出了一种基于扫频光学相干断层扫描(SS-OCT)原理的雷达技术。 太赫兹波2D成像可以与这些雷达技术结合使用以获得3D成像系统。

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