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Adaptive-Weighting Schemes for Location-Based Services over Heterogeneous Wireless Networks

机译:异构无线网络上基于位置的服务的自适应加权方案

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Global positioning systems, widely known as GPSs, provide timing, navigation, and positioning signals to military and civilian users. When a GPS receiver receives satellite signals, the distance between the satellite and the user is first calculated, and then the user's current position is located using the triangulation method. However, there is a possibility that atmospheric conditions, multipath fading, and shadowing effects could have an impact on the satellite signal. As wireless technology has progressed, different user locations and locating systems have been invented, such as the WiFi locating system, which mainly uses received signal strength indication (RSSI) to set up radio maps that provide locations, and RF models to estimate the locations of a moving user. The Zigbee locating system tracks the position of blind nodes, using RF signal strength calculation and known coordinates to estimate the distance between reference points. Using the triangulation method, Zigbee searches for blind node coordinates. This research proposes an adaptive-weighting locating mechanism within wireless heterogeneous networks, which enhances GPS's ability to receive signals in buildings and precision in estimating locations.
机译:全球定位系统,广泛称为GPS,为军事和平民用户提供定时,导航和定位信号。当GPS接收器接收卫星信号时,首先计算卫星和用户之间的距离,然后使用三角测量方法定位用户的当前位置。然而,有可能是大气条件,多路径衰落和阴影效应可能对卫星信号产生影响。随着无线技术的进展,已经发明了不同的用户位置和定位系统,例如WiFi定位系统,主要使用接收信号强度指示(RSSI)来设置提供位置的无线电贴图,以及RF模型来估计位置移动用户。 ZigBee定位系统使用RF信号强度计算和已知坐标来追踪盲节点的位置以估计参考点之间的距离。使用三角测量方法,ZigBee搜索盲节节点坐标。该研究提出了无线异构网络内的自适应加权定位机制,这提高了GPS在估计位置接收建筑物中的信号和精度的能力。

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