卡尔曼滤波器透视下的太赫兹传感:文献计量学探索

Khaled Obaideen, Mohammad A. AlShabi, Talal Bonny
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摘要

太赫兹(THz)频谱介于微波和红外频率之间,可用于成像和化学分析等应用。该项目旨在将太赫兹传感与卡尔曼滤波估计器相结合,卡尔曼滤波估计器是一种递归算法,通常用于估计高噪声数据。经过充分努力,我们研究了使用卡尔曼滤波器辅助太赫兹传感的前景和挑战。在对这一领域进行研究后,我们发现结合太赫兹波长技术的模式越来越多,从而提高了卡尔曼滤波器在太赫兹传感中应用的精度和有效性。本文讨论的主题是这项技术在提高困难条件下检测和测量数据的可靠性方面的重要意义。此外,本文还概述了太赫兹传感领域的重要进展和趋势,以及有助于太赫兹传感发展的各个学科的进展。本文详细介绍了在太赫兹传感中使用卡尔曼滤波器的当前规划和缺点。它为科学家和专业人士提供了广泛的指导,为该领域未来的发展奠定了基础。采用这些方向性方法不仅能提高探测能力,还能为太赫兹传感领域做出新的贡献,促进知识共享。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Terahertz sensing through the lens of the Kalman filter: a bibliometric exploration
The Terahertz (THz) spectrum, situated between microwave and infrared frequencies, is utilized for applications such as imaging and chemical analysis. This project aims to combine THz sensing with the Kalman Filter estimator, a recursive algorithm typically utilized for estimating data with high levels of noise. Upon a thorough effort, we investigate the prospects and challenges in THz sensing using the Kalman filter for assistance. Upon examining this area, we found an increasing pattern in combining THz wavelength technologies that boosts the precision and effectiveness of Kalman Filter applications in THz sensing. The topic being talked about is the significance of this technology in improving the dependability of detecting and measuring data in difficult conditions. Moreover, this document outlines essential advancements and trends in the field of THz sensing, as well as the progress in various disciplines that contribute to the development of THz sensing. This paper presents details about the current planning and disadvantages of utilizing Kalman Filters in THz sensing. It has served as a broad guide for both scientists and professionals, laying the groundwork for future advancements in this field. Incorporating these directivity methods not only enhances detection capabilities but also produces novel contributions to the field of THz sensing that also facilitate knowledge sharing.
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