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Performance Evaluation of the RF Receiver for Precision Positioning System

机译:精密定位系统射频接收器的性能评估

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One of the major drivers for developing integrated navigation systems is the vision to provide first responders and healthcare providers, critical information where and when they need it. These integrated wireless devices of the future will assist the user with communications and incident management operations in the field in real time. The most important piece of such a system is clearly a ability to track and locate these wireless devices with high precision in a high-multipath environment. rnA previous paper presented a novel method for precise geolocation in indoor environments using an orthogonal frequency domain multiplexed (OFDM) signal consisting of many sinusoidal sub-carriers [1]. Unlike the ultra wideband signals that are often proposed for performing precision location in high multipath environments, the proposed signal structure is easily adapted to conform to existing spectral allocations. Further, the signal structure is capable of being used in coded orthogonal frequency domain multiplexing (COFDM) systems for supporting communications and navigation concurrently on the same radio channel. This technique is also well suited for use on ad hoc wireless networks, allowing the precision location of wireless nodes with respect to one another. This OFDM-based technique was first demonstrated using audio frequency signals rather than RF signals and is currently being implemented at RF. rnThe focus of this paper is the design and performance evaluation of the RF front end receiver structure being developed for precision location system using this multicarrier technique. The effect on the precision of the location estimate due to RF receiver design imperfections will be assessed and design issues for future receiver design improvements will be reviewed.
机译:开发集成导航系统的主要驱动力之一就是为急救人员和医疗保健提供者在需要的时间和地点提供重要信息的愿景。未来的这些集成无线设备将在现场实时帮助用户进行通信和事件管理操作。这种系统最重要的部分显然是能够在高多径环境中以高精度跟踪和定位这些无线设备的功能。先前的论文提出了一种使用正交频域复用(OFDM)信号在室内环境中进行精确地理位置定位的新颖方法,该信号由许多正弦副载波组成[1]。与通常建议在高多径环境中执行精确定位的超宽带信号不同,建议的信号结构易于调整以符合现有的频谱分配。此外,该信号结构能够在编码正交频域复用(COFDM)系统中使用,以在同一无线电信道上同时支持通信和导航。这项技术也非常适合在ad hoc无线网络上使用,从而可以实现无线节点之间的精确定位。这种基于OFDM的技术首先使用音频信号而不是RF信号进行了演示,目前正在RF上实现。本文的重点是使用这种多载波技术为精密定位系统开发的RF前端接收器结构的设计和性能评估。将评估由于RF接收器设计不完善而对位置估计精度造成的影响,并将审查未来接收器设计改进的设计问题。

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