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首页> 外文期刊>Instrumentation and Measurement, IEEE Transactions on >Ray-Tracing-Assisted Fingerprinting Based on Channel Impulse Response Measurement for Indoor Positioning
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Ray-Tracing-Assisted Fingerprinting Based on Channel Impulse Response Measurement for Indoor Positioning

机译:基于通道脉冲响应测量的光线追踪辅助指纹在室内定位中的应用

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摘要

Position fingerprinting (FP), in which a common position signature is based on the received signal strength (RSS), is one of the most efficient indoor positioning methods. Another position signature, known as the channel impulse response (CIR), is regarded as a linear temporal filter, which characterizes the multipath channel of the operating environment. We implement a channel sounder based on an orthogonal frequency-division multiplexing system to collect off-line/online CIR measurements and develop a ray-tracing (RT) channel predictor to capture the main characteristics of the channel for the off-line predicted database. We are the first to utilize RT as a channel predictor to assist indoor FP using CIR measurements. We utilize coarse localization to classify the reference points (RPs) based on the access point with the strongest RSS. We propose an RT-assisted FP (RAFP) method, in which we estimate a position by fusing the measured and predicted signatures to find the RPs with the highest correlation values between the online measurement and the off-line measured and simulated CIR databases. Experimental results show that the RAFP—positioning with a hybrid of the predicted and measured CIR—reduces the FP localization error by 25%. By incorporating simulated CIRs, the RAFP has the advantages in reducing human labor for off-line measurement collection and in using less number of CIR measurements to maintain a satisfactory performance. The results encourage a further development to reduce the cost by replacing the sounding system with the wireless network interface cards for a scalable deployment.
机译:位置指纹识别(FP)是最有效的室内定位方法之一,其中基于接收信号强度(RSS)的公共位置签名。另一个称为信道脉冲响应(CIR)的位置签名被视为线性时间滤波器,它表征了操作环境的多径信道。我们基于正交频分复用系统实现了一个信道探测仪,以收集离线/在线CIR测量值,并开发了光线跟踪(RT)通道预测器,以捕获离线预测数据库的通道的主要特征。我们是第一个将RT用作信道预测器以使用CIR测量来辅助室内FP的公司。我们利用粗略的定位,根据具有最强RSS的访问点对参考点(RP)进行分类。我们提出了一种RT辅助FP(RAFP)方法,在该方法中,我们通过融合测得的和预测的特征来找到在线测量与离线测得的CIR数据库之间具有最高相关性值的RP,从而估计位置。实验结果表明,RAFP结合了预测的CIR和测量的CIR进行定位,可将FP定位误差降低25%。通过合并模拟的CIR,RAFP的优势在于减少了用于离线测量收集的人工,并减少了CIR测量的次数以保持令人满意的性能。结果鼓励通过用无线网络接口卡替换探测系统以进行可扩展部署来降低成本的进一步发展。

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