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New Concept of Combined Microwave Delay Lines for Noise Radar-Based Remote Sensors

机译:基于噪声雷达的遥感器组合微波延迟线的新概念

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摘要

Delay lines with a tunable length are used in a number of applications in the field of microwave techniques. The digitally-controlled analogue wideband delay line is particularly useful in noise radar applications as a precise detector of movement. In order to perform coherent reception in the noise radar, a delay line with a variable delay value is required. To address this issue, this paper comprises a new concept of a digitally-controlled delay line with a set of fine distance gates. In the paper, a solution for micro-movement detection is proposed, which is based on direct signal processing in the time domain with the use of a microwave analogue correlator. This concept assumes the use of a microwave analogue tapped delay line structure. It was found that the optimal solution for a noise radar with an analogue signal correlator is a combined delay line consisting of switched reference sections, a tapped delay line, and a precision phase shifter. The combined delay line presented in this paper is dedicated to serving as the adjustable reference delay for a noise radar intended for the detection of micro-movement. The paper contains the calculation results and delay line implementation for a given example. The new structure of the analogue tapped delay line with the calculation of optimal parameters is also presented. The precise detector of movement can be successfully used for the remote sensing of human vital signs (especially through-the-wall), e.g., breathing and heart beating, with the simultaneous determination of position.
机译:具有可调长度的延迟线在微波技术领域中的许多应用中使用。数控模拟宽带延迟线作为噪声的精确检测器,在噪声雷达应用中特别有用。为了在噪声雷达中执行相干接收,需要具有可变延迟值的延迟线。为了解决这个问题,本文提出了一种新的概念,即带有一组精细距离门的数字控制延迟线。本文提出了一种微动检测解决方案,该解决方案基于时域直接信号处理,并使用微波模拟相关器。该概念假定使用微波模拟抽头延迟线结构。已经发现,具有模拟信号相关器的噪声雷达的最佳解决方案是组合延迟线,该延迟线由开关参考部分,抽头延迟线和精密移相器组成。本文提出的组合延迟线专用于充当旨在检测微动的噪声雷达的可调参考延迟。本文包含给定示例的计算结果和延迟线实现。还介绍了模拟抽头延迟线的新结构,并计算了最佳参数。精确的运动检测器可以成功地用于遥感人类生命体征(尤其是穿墙),例如呼吸和心脏跳动,同时确定位置。

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