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New Architecture for a Wireless Smart Sensor Based on a Software-Defined Radio

机译:基于软件定义无线电的无线智能传感器的新架构

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Today, wireless sensor technology is based on monolithic transceivers that optimize cost but have a rigid hardware architecture. In this paper, a new architecture for wireless sensors is presented. It is based on a software-defined radio concept and shows impressive adaptability to external conditions. The proposed architecture, which is called the wireless ultrasmart sensor (WUSS), enables the use of a software programmable transceiver, which can simultaneously manage multiple radio communication channels or standards. In addition, the WUSS architecture can mix the flexible communication part of the smart device with the sensor conditioning part. This combination represents a new generation of general-purpose sensors for microwave measurements in the gigahertz range (e.g., displacement and position sensing) with enhanced versatility since the same radio-frequency front end is both used to communicate and make measurements. Experimental results demonstrate the feasibility of the proposed architecture. A prototype shows the following abilities: managing multiple protocols using a single antenna, interfacing standard sensors, making delay and phase measurements with a standard deviation of 3 ns, and assigning the time of arrival to incoming radio signals with an error on the order of 20 ns.
机译:如今,无线传感器技术基于单片收发器,该收发器可优化成本,但具有严格的硬件架构。在本文中,提出了一种新的无线传感器架构。它基于软件定义的无线电概念,显示出对外部条件的出色适应性。所提出的架构称为无线超智能传感器(WUSS),可以使用软件可编程收发器,该收发器可以同时管理多个无线电通信通道或标准。此外,WUSS体系结构可以将智能设备的灵活通信部分与传感器调节部分混合在一起。这种组合代表了新一代通用传感器,可用于千兆赫兹范围内的微波测量(例如位移和位置感应),并且具有增强的多功能性,因为相同的射频前端既用于通信又用于进行测量。实验结果证明了该架构的可行性。原型具有以下功能:使用单个天线管理多种协议,与标准传感器接口,以3 ns的标准偏差进行延迟和相位测量,并为进入的无线电信号分配到达时间,误差约为20 ns。

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