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An Accurate and Compact High Power Monocycle Pulse Transmitter for Microwave Ultra-Wideband Radar Sensors with an enhanced SRD model: Applications for Distance Measurement for lossy materials

机译:具有增强型SRD型号的微波超宽带雷达传感器的精确且紧凑的高功率单循环脉冲变送器:磁力材料距离测量的应用

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摘要

In This paper, a high power sub-nanosecond pulse transmitter for Ultra-wideband radar sensor is presented. The backbone of the generator is considered as a step recovery diode and unique pulse injected into the circuit, which gives rise to an ultra-wide band Gaussian pulse. The transistor driver and transmission line pulse forming the whole network are investigated in detail.  The main purpose of this work is to transform a square waveform signal to a driving pulse with the timing and the amplitude parameters required by the SRD to form an output Gaussian pulse, and then into high monocycle pulses. In simulation aspect, an improved output response is required, in this way a new model of step recovery diode has been proposed as a sharpener circuit. This proposition was applied to increase the rise-time of the pulses. For a good range radar, a high amplitude pulse is indispensable, especially when it comes to penetrate thick lossy materiel.  In order to overcome this challenge, a simple technique and useful solution is introduced to increase the output amplitude of the transmitter. This technique consists to connect the outputs of two identical pulse generators in parallel respecting the restrictions required. The pulse transmitter circuit is completely fabricated using micro-strip structure technology characteristics. Waveforms of the generated monocycle pulses over 10V in amplitude with 3.5 % in overshoot have been obtained. Good agreement has been achieved between measurement and simulation results.
机译:本文提出了一种用于超宽带雷达传感器的高功率子纳秒脉冲发射器。发电机的骨干被认为是步进恢复二极管,并注入电路的独特脉冲,这导致超宽带高斯脉冲。详细研究了形成整个网络的晶体管驱动器和形成的传输线脉冲。该工作的主要目的是使用SRD所需的定时和幅度参数将方波信号转换为驱动脉冲,以形成输出高斯脉冲,然后进入高单循环脉冲。在仿真方面,以这种方式需要改进的输出响应,以这种方式已经提出了一种新的步骤恢复二极管模型作为磨刀器电路。应用该命题以增加脉冲的上升时间。对于良好的范围雷达,高振幅脉冲是必不可少的,特别是当渗透厚的损坏物资时。为了克服这一挑战,引入了一种简单的技术和有用的解决方案来增加发射机的输出幅度。该技术包括并行地连接两个相同脉冲发生器的输出,求出所需的限制。脉冲发射器电路采用微带结构技术特性完全制造。已经获得了在过冲3.5%的幅度超过10V的产生单相脉冲的波形。测量和仿真结果之间取得了良好的一致性。

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