标题: 具空间多样性以补偿地面多路径效应之汽车防撞警示雷达设计
Spatial-Diversity Radar With Ground Effect Compensation for Vehicle Collision Warning Applications
作者: 王孝宁
钟世忠
Wang, Hsiao-Ning
Chung, Shyh-Jong
电信工程研究所
关键字: 空间多样性;连续频率调变雷达;spatial diversity;FMCW radar
公开日期: 2016
摘要: 本论文旨在讨论路面对汽车防撞雷达造成的多重反射以干涉接收讯号,进而降低接收讯号之强度,使得侦测率下降之问题。本文提出一具地面多重路径补偿之一发二收频率连续调变波雷达并应用在汽车防撞雷达之设计,此外,文中也提出一些汽车防撞雷达之设计及应用。
首先,介绍及讨论一些常使用在车用雷达方面的雷达技术及目标物辨识方法,其波型的设计尤其重要也是讨论的重点;再者,目标物辨识对雷达来说更是重要的一环;因此,探讨一些常使用到的固定侦测率技术并着重于多目标物之情形;此外,目标物追踪技术对车用雷达亦是重要的课题。
再者,为了能够有效的描述地面对雷达波的影响,一个由射线追踪演算法所发转出来的四射线模型将被提出并计算地面效应对雷达所造成的影响,由模拟的数据得知地面效应对一些常使用的车用雷达频率24及77 GHz将造成剧烈的讯号衰减,然而本文使用一高通滤波器可以稍稍补偿此讯号衰减之现象。
有鉴于地面干涉雷达波之现象,我们提出一具地面多重路径补偿之一发二收频率连续调变波车用雷达架构以补偿路面所造成之讯号衰减;在此架构之中,适当的间隔在两接收天线之间可以使其两天线拥有好的讯号互补效应,并配合本文所提出之最大值选择演算法,如此一来可以有效的提升讯号与地面杂波之比例进而增加讯号侦测率。
文末,将实现此具地面多重路径补偿之一发二收之频率连续调变波雷达并应用于24-GHz前视雷达,其量测与模拟的结果相当吻合,此架构可以有效的提升讯号强度,并提升雷达侦测率;此外,一个体积精巧并操作于24-GHz频段之盲点侦测雷达将被提出并应用于短距离侦测之上,此设计符合ISO 17387之规范,可以大幅提升驾驶人对于盲区的保障。再者,一操作于24-GHz频段之单车道侦测前视雷达雷达将被提出以作为前方碰撞侦测之应用,其技术将可应用在未来自动紧急煞车系统之上;最后,一高增益双槽孔基板合成波导阵列天线将被提出并作为未来应用于77-GHz之防撞雷达应用。
This dissertation discusses a realistic road surface can cause multipath reflection, degrade the received power, and reduce detection probability for automotive radar application. A one-transmitter-two-receiver (1T2R) frequency-modulation continuous-wave (FMCW) radar architecture with spatial diversity and ground-effect compensation for automotive applications has been proposed. Besides, several vehicle collision warning radars have been developed and implemented for automotive applications.
In the first stage of this dissertation, several techniques to acquire data and recognize as a target have been introduced and discussed, especially for automotive radar application. The focus is on waveform design in general and on automotive applications in particular. Target detection is an important issue for all radar systems. Therefore some Constant False Alarm Rate (CFAR) procedures are discussed which can be applied, especially in multiple target situations, to avoid masking. Additionally some tracking techniques are introduced and discussed for target recognition which have been developed for automotive applications
Next, the multipath reflection caused by a road surface has been presented. A four-ray model has been introduced to estimate the received power response with a ground surface by ray-tracing technique. The power responses of multi-reflection with ground surface at 24 and 77 GHz have been investigated and discussed, which reveal the road surface leads severe power degeneration. Moreover, a Sallen-Key high pass filter has been introduced to compensate the path loss of the received power response.
Based on the knowledge of multipath effect of a road surface, we further proposes a one-transmitter-two-receiver frequency-modulation continuous-wave (FMCW) radar architecture with spatial diversity and ground-effect compensation for automotive applications. In the proposed design, suitable spacing between the two receiving antennas compensated for the multipath effect of the road surface and improved the signal-to-ground-clutter ratio of the receivers at certain distances.
In the last part of the dissertation, a spatial-diversity 24-GHz radar has been proposed and implemented for forward-looking application. The measurement results show a good agreement with the calculated results, which largely increase the received power and detection rate. Besides, a compact 24-GHz blind spot detection (BSD) radar has been developed for a short range warning application referring to ISO 17387 specification, which provided a good protection in the blind zone for the driver. Moreover, a single-lane-cover 24-GHz radar has also been presented to provide a forward collision warning feature, and has the potential to be applied in the Autonomous Emergency Braking (AEB) system in the future. Finally, a high gain slot-pair substrate-integrated-waveguide (SIW) antenna has been presented as a candidate for the proposed spatial-diversity architecture for 77 GHz vehicle collision warning application.
URI: http://etd.lib.nctu.edu.tw/cdrfb3/record/nctu/#GT079813806
http://hdl.handle.net/11536/141495
显示于类别:Thesis