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Design considerations for a microprocessor-based Doppler radar

机译:基于微处理器的多普勒雷达的设计考虑因素

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This paper presents the main design considerations for microprocessors used in velocity-time measurement systems. By processing the output signal from a continuous-wave Doppler radar, the microprocessor is used to find and track the velocity of a moving target. Tracking the changes in the object's velocity with the time, as requires by numerous modern applications, entails intense inspection of the Doppler signal. This sets a challenge for the hardware and software parts of the electronic system involved in this process. After presenting the possible approaches that can be followed to process the Doppler signal, the paper reports the main conditions under which any microprocessor-based system can implement these approaches effectively. In addition, the relative uncertainty relations of the velocity measured using each approach are analyzed and derived. Next, a dsPIC33 microcontroller system in conjunction with an X-band Doppler radar is used to employ one of the reported methods. The implemented system proves the possibility of realizing a simple, compact and affordable electronic system for any type of Doppler radar by following the same design considerations to provide the user with the necessary information about any moving object. The findings of this paper provide an important tool for system designers by highlighting the main factors affecting the design parameters for microcontroller systems used for velocitytime measurements. (c) 2020 Elsevier B.V. All rights reserved.
机译:本文提出了用于速度时间测量系统的微处理器的主要设计考虑因素。通过从连续波多普勒雷达处理输出信号,微处理器用于查找和跟踪移动目标的速度。随着时间的推移,跟踪对象速度的变化,如有许多现代应用,需要对多普勒信号进行强烈检查。这为此过程中涉及的电子系统的硬件和软件部件设置了挑战。在提出可以遵循处理多普勒信号的可能方法之后,该论文报告了任何基于微处理器的系统可以有效实现这些方法的主要条件。此外,分析并导出了使用每种方法测量的速度的相对不确定性关系。接下来,使用与X波段多普勒雷达一起使用的DSPIC33微控制器系统采用其中一个报告的方法。通过以下相同的设计考虑,所实施的系统证明了通过以下相同的设计考虑来实现任何类型的多普勒雷达的简单,紧凑且实惠的电子系统,以便向用户提供有关任何移动对象的必要信息。本文的调查结果为系统设计人员提供了一种重要的工具,通过突出显示用于速度测量的微控制器系统的微控制器系统的设计参数的主要因素。 (c)2020 Elsevier B.v.保留所有权利。

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