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Experimental study of trilateration algorithms for ultrasound-based positioning system on QNX RTOS

机译:QNX RTOS超声型定位系统三设算法的实验研究

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This paper presents an indoor localization system to determine the position of a target in 3D environment using RF and Ultrasound. Distances from the target to reference nodes are calculated using Time Difference of Arrival (TDoA) principle. Then trilateration algorithms, namely Linear Least Squares, Nonlinear Least Squares, Closed-Form Position and Cayley-Menger Determinants, are applied to determine the target position. All software programs, except the one on pre-processing board, are developed based on QNX Neutrino RTOS which has many advantages such as micro-kernel architecture, POSIX-certified. QNX is also applied popularly in modern embedded systems. A hardware system is built and experiments have been carried out to verify the system operation and compare the accuracy between the positioning algorithms.
机译:本文介绍了一个室内定位系统,用于使用RF和超声测定3D环境中目标的位置。使用时间差的到达(TDOA)原则计算来自目标到参考节点的距离。然后将三边形算法,即线性最小二乘,非线性最小二乘,闭合位置和Cayley-Menger决定簇用于确定目标位置。除了在预处理板上之外的所有软件程序都是基于QNX Neutrino RTOS开发的,其中具有许多微内核架构,POSIX认证的优点。 QNX也普遍存在现代嵌入式系统中。构建硬件系统,并进行了实验以验证系统操作并比较定位算法之间的精度。

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