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ZigBee based wireless indoor localization with sensor placement optimization towards practical home sensing*

机译:基于 ZigBee 的无线室内定位,传感器放置优化,实现实用的家庭传感*

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摘要

Indoor localization with wireless communication technologies is gaining popularity among the ubiquitous computing and intelligent robotics communities. Thanks to the rapid growth in statistical machine learning research, indoor localization methods are being actively pursued with accelerated localization accuracy. However, cost in terms of budget constraints with respect to the number of installed sensors should be considered towards practical home sensing, however few studies have addressed this issue. We propose an installation scenario for practical home sensing applications and a flexible procedure for it with optimal sensor selection algorithms. With this scenario, we assume that a large number of ZigBee devices are temporarily deployed to the home in the initial status, then redundant sensors are efficiently taken off via optimal sensor selection. Thanks to a wide variety of options to formulate sensor selection, we describe an empirical evaluation with various formulations. Specifically, we used prototype ZigBee-based wireless sensor systems in an actual residential environment spread over
机译:使用无线通信技术进行室内定位在无处不在的计算和智能机器人社区中越来越受欢迎。由于统计机器学习研究的快速发展,室内定位方法正在被积极追求,以加快定位精度。然而,在实际的家庭传感方面,应考虑安装传感器数量方面的预算限制成本,但很少有研究解决这个问题。我们为实际的家庭传感应用提出了一个安装场景,并提出了一个具有最佳传感器选择算法的灵活程序。在这种情况下,我们假设大量 ZigBee 设备在初始状态下临时部署到家中,然后通过优化传感器选择有效地移除冗余传感器。由于制定传感器选择的多种选择,我们描述了具有各种公式的经验评估。具体来说,我们在实际的住宅环境中使用了基于ZigBee的无线传感器系统的原型

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