{"title":"基于OFDM导频信号的测距测速方法 Novel Method of Range and Velocity Measurement Based on OFDM Pilot Signal","authors":"叶恒, 余小游, 慈能达, 孙鹏帅, 马和风, 林培英, 陈星","doi":"10.12677/HJWC.2017.73013","DOIUrl":null,"url":null,"abstract":"实现车辆的距离和速度估计是车载通信与网络领域的重要方向,针对导频信号具有功率大、良好的无源探测性能等优点,本文在OFDM信号的基础上,提出了一种利用OFDM导频信号进行测距测速的方法。首先推导得到了OFDM导频信号接收信号频域矩阵,对其行、列向量频谱进行搜索,经过处理得到目标的距离和速度,然后通过仿真实验及性能分析,验证了OFDM导频信号能够满足车载通信网络中车辆测距测速要求。 The estimation of range and velocity is an important direction of the vehicular communications and networking field. In view of the pilot signal with large power, and the advantages of good passive detection performance, this paper proposes a new velocity and range measuring method using OFDM pilot signal based on the OFDM signal. The OFDM pilot signals frequency domain matrix was derived firstly, the range and velocity of the target can be obtained through searching the frequency of the columns and row vector frequency of the matrix. And then through the simulation experiment and performance analysis we prove that this method can meet the requirements of range and velocity measurement in vehicular communication networking.","PeriodicalId":66606,"journal":{"name":"无线通信","volume":" ","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2017-06-19","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"无线通信","FirstCategoryId":"1093","ListUrlMain":"https://doi.org/10.12677/HJWC.2017.73013","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
实现车辆的距离和速度估计是车载通信与网络领域的重要方向,针对导频信号具有功率大、良好的无源探测性能等优点,本文在OFDM信号的基础上,提出了一种利用OFDM导频信号进行测距测速的方法。首先推导得到了OFDM导频信号接收信号频域矩阵,对其行、列向量频谱进行搜索,经过处理得到目标的距离和速度,然后通过仿真实验及性能分析,验证了OFDM导频信号能够满足车载通信网络中车辆测距测速要求。 The estimation of range and velocity is an important direction of the vehicular communications and networking field. In view of the pilot signal with large power, and the advantages of good passive detection performance, this paper proposes a new velocity and range measuring method using OFDM pilot signal based on the OFDM signal. The OFDM pilot signals frequency domain matrix was derived firstly, the range and velocity of the target can be obtained through searching the frequency of the columns and row vector frequency of the matrix. And then through the simulation experiment and performance analysis we prove that this method can meet the requirements of range and velocity measurement in vehicular communication networking.
基于OFDM导频信号的测距测速方法 Novel Method of Range and Velocity Measurement Based on OFDM Pilot Signal
Realizing distance and speed estimation of vehicles is an important direction in the field of on-board communication and networks. In response to the advantages of high power and good passive detection performance of pilot signals, this paper proposes a method for distance and speed measurement using OFDM pilot signals based on OFDM signals. Firstly, the frequency domain matrix of the OFDM pilot signal reception signal was derived, and its row and column vector spectra were searched. After processing, the distance and speed of the target were obtained. Then, through simulation experiments and performance analysis, it was verified that the OFDM pilot signal can meet the requirements of vehicle distance measurement and speed measurement in the vehicle communication network. The estimation of range and velocity is an important direction of the vehicular communications and networking field In view of the pilot signal with large power, and the advantages of good passive detection performance, this paper proposes a new velocity and range measuring method using OFDM pilot signal based on the OFDM signal The OFDM pilot signals frequency domain matrix was derived first, the range and velocity of the target can be observed through searching the frequency of the columns and row vector frequency of the matrix And then through the simulation experience and performance analysis we have provided that this method can meet the requirements of range and velocity measurement in vehicular communication networking