Suppr超能文献

带有集成静态目标回波消除系统的步进频率连续波雷达。

SFCW Radar with an Integrated Static Target Echo Cancellation System.

作者信息

Šipoš Danijel, Gleich Dušan

机构信息

Faculty of Electrical Engineering and Computer Science, University of Maribor, Koroska Cesta 46, 2000 Maribor, Slovenia.

出版信息

Sensors (Basel). 2021 Aug 30;21(17):5829. doi: 10.3390/s21175829.

Abstract

Continuous Wave (CW) radars systems, especially air-coupled Ground-Penetrating Radar (GPR) or Through-Wall Imaging Radar (TWIR) systems, echo signals reflected from a stationary target with high energy, which may cause receiver saturation. Another effect caused by reflection of stationary targets is noticeable as background within a radargram. Nowadays, radar systems use automatic gain control to prevent receiver saturation. This paper proposes a method to remove stationary targets automatically from the received signal. The method was designed for a radar system with a moving platform, with an assumption that the distance between the surface and target is constant. The design is proposed of an SFCW radar with an integrated system for real-time multiple static target Echo Cancellation (EC). The proposed EC system removes the static target using active Integrated Circuit (IC) components, which generate the corresponding EC signal for each frequency step of the SFCW radar and sum it with the received echo signal. This has the main advantage of removing even multiple echoes at any distance, and excludes the need for a high-dynamic-range receiver. Additionally, the proposed system has minimal impact on the radar size and power consumption. Besides static target removal, the antenna coupling can be removed if the signal appears to be constant. The operating frequency was selected between 500 MHz and 2.5 GHz, due to the limitation of the used electronic components. The experimental results show that the simulated target's echo using a cable with a known length could be suppressed to up to 38 dB. Experimental results using a moving radar platform and the real environment scenario with static and dynamic targets, show that the proposed EC system could achieve up to 20 dB attenuation of the static target. The system does not affect any other target of interest, which can even move at any distance during the measurement. Therefore, this could be a promising method for further compact implementation into SFCW radars, or any other radar type that generates CW single frequencies.

摘要

连续波(CW)雷达系统,特别是空气耦合探地雷达(GPR)或穿墙成像雷达(TWIR)系统,会接收到来自静止目标的高能反射回波信号,这可能导致接收器饱和。静止目标反射产生的另一个影响在雷达图像中表现为背景。如今,雷达系统使用自动增益控制来防止接收器饱和。本文提出一种从接收信号中自动去除静止目标的方法。该方法是为具有移动平台的雷达系统设计的,假设地面与目标之间的距离恒定。提出了一种具有实时多静态目标回波消除(EC)集成系统的步进频率连续波(SFCW)雷达设计方案。所提出的EC系统使用有源集成电路(IC)组件去除静态目标,这些组件为SFCW雷达的每个频率步长生成相应的EC信号,并将其与接收到的回波信号相加。这样做的主要优点是能够去除任意距离处的多个回波,并且无需高动态范围的接收器。此外,所提出的系统对雷达尺寸和功耗的影响最小。除了去除静态目标外,如果信号看起来恒定,还可以去除天线耦合。由于所用电子元件的限制,工作频率选择在500 MHz至2.5 GHz之间。实验结果表明,使用已知长度电缆模拟目标的回波可被抑制高达38 dB。使用移动雷达平台以及包含静态和动态目标的真实环境场景的实验结果表明,所提出的EC系统对静态目标的衰减可达20 dB。该系统不会影响任何其他感兴趣的目标,这些目标甚至可以在测量过程中的任意距离处移动。因此,这可能是一种有前景的方法,可进一步紧凑地应用于SFCW雷达或任何其他产生连续波单频率的雷达类型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aaaf/8433851/425f3221c94b/sensors-21-05829-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验