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Indoor human tracking mechanism using integrated onboard smartphones Wi-Fi device and inertial sensors

机译:使用集成的智能手机Wi-Fi设备和惯性传感器的室内人机跟踪机制

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In indoor/outdoor environments, special cares need to be given to locate smartphones which are used by most of the people. Locating or tracking is valuable for those people who are in dangerous falling-situations or they are used for shopping and billing services, inside the buildings. This tracking system needs a new positioning mechanism to offer very accurate services to the special needy people. To this end, this paper presents a hybrid mechanism to locate indoors smartphones; specifically Wi-Fi access-points signals are available. The proposed mechanism incorporates onboard Wi-Fi and sensor devices including gyroscopes and accelerometers to provide accurate indoor smart phone positioning. This paper proposes an integrated approach to offer indoor smartphone positioning. The purpose of the integrated approach is to fuse multi-technologies measurements on smartphones. The mechanism uses proximity-level (based on received-signal-strength 'RSS' measurement) technique between the smartphone and Wi-Fi access-points which they are exist in the vicinity. Then it combines this proximity measurement with uncertainty calculations from onboard dead-reckoning measurements using Extended-Kalman filter, which can provide seamless, low cost, and improve location accuracy significantly, especially when deep indoor. This means, in deep indoor, the approach can utilize only a single Wi-Fi access-points signals as well as using prior-estimate positions based on artificial conditions. The results from different trial experiments (using Android-based smartphones) show that around 2.5-m positioning accuracy can be obtained.
机译:在室内/室外环境中,需要特殊的关心来定位大多数人使用的智能手机。定位或跟踪对于那些处于危险下降情况的人或他们用于购物和计费服务的人来说是有价值的。该跟踪系统需要一种新的定位机制,为特殊需要的人提供非常准确的服务。为此,本文提出了一个混合机制来定位室内智能手机;特别是Wi-Fi接入点信号可用。所提出的机制包括板载Wi-Fi和传感器装置,包括陀螺仪和加速度计,以提供准确的室内智能手机定位。本文提出了一种提供室内智能手机定位的综合方法。综合方法的目的是为智能手机熔断多技术测量。该机制使用邻近级(基于所接收的信号 - 强度'RSS测量)在附近存在的智能手机和Wi-Fi接入点之间的技术。然后,它将这种接近测量与使用扩展Kalman滤波器的船上止蚀测量的不确定性计算结合,这可以提供无缝,低成本,并显着提高位置精度,特别是在室内深度时。这意味着在室内深,该方法可以仅利用单个Wi-Fi接入点信号以及基于人工条件的先前估计位置。不同试验实验的结果(使用基于Android的智能手机)表明,可以获得大约2.5米的定位精度。

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