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Pedestrian Localisation inside buildings based on multi-sensor smartphones

机译:基于多传感器智能手机的建筑物内行人定位

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Automatic real-time localisation of people inside of buildings (indoor) is a huge challenge. For demanding applications of mobile services, different sensors such as WLAN, RFID, UWB or ultrasound are currently used for real-time indoor positioning. However, a general solution like GNSS for outdoor environments still does not exist for indoor areas. Most systems are only suitable for specific applications or are deployed under certain conditions, since additional infrastructures and/or sensory mechanisms are needed. Smartphones, as widespread low-cost multi sensor device, seem to be a promising platform for mass-market indoor localisation applications. In order to determine the three-dimensional position, several integrated navigation sensors can be utilised: 3-axis accelerometer, 3-axis magnetic field sensor, 3-axis gyroscope or barometer. Furthermore, prevalent wireless technologies such as WLAN, Bluetooth, or GNSS are embedded into smartphones and can also be used. In this paper, an approach for real-time smartphone- based pedestrian indoor localisation is presented. The novelty of this approach refers to further investigations towards a robust real-time pedestrian indoor localisation inside of buildings based on multi-sensor smartphones. Several technologies contributing to higher precision and robustness are included and evaluated. For the fusion of different sensor data, an extended algorithm based on Sequential Monte Carlo methods is presented, which also integrates building models and external positioning systems.
机译:建筑物内(室内)人员的自动实时本地化是一个巨大的挑战。对于移动服务的苛刻应用,当前使用不同的传感器(例如WLAN,RFID,UWB或超声波)进行实时室内定位。但是,对于室外区域,仍不存在像GNSS这样的用于室外环境的常规解决方案。大多数系统仅适用于特定应用或在某些条件下部署,因为需要其他基础结构和/或感觉机制。智能手机作为广泛使用的低成本多传感器设备,似乎是面向大众市场的室内定位应用的有前途的平台。为了确定三维位置,可以使用几个集成的导航传感器:3轴加速度计,3轴磁场传感器,3轴陀螺仪或气压计。此外,诸如WLAN,蓝牙或GNSS之类的流行无线技术已嵌入到智能手机中,也可以使用。本文提出了一种基于智能手机的实时行人室内定位方法。这种方法的新颖性指的是对基于多传感器智能手机的建筑物内部健壮的实时行人室内定位的进一步研究。包括并评估了有助于更高的精度和鲁棒性的几种技术。为了融合不同的传感器数据,提出了一种基于序列蒙特卡洛方法的扩展算法,该算法还集成了建筑模型和外部定位系统。

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