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Interval arithmetic to support effective indoor positioning of software agents

机译:间隔算法支持软件代理的有效室内定位

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摘要

The provision of advanced location-based services in indoor environments is based on the possibility of estimating the positions of mobile devices with sufficient accuracy and robustness. An algorithm to allow a software agent hosted on a mobile device to estimate the position of its device in a known indoor environment is proposed under the ordinary assumption that fixed beacons are installed in the environment at known locations. Rather than making use of geometric considerations to estimate the position of the device, the proposed algorithm first transforms the localization problem into a related optimization problem, which is then solved by means of interval arithmetic to provide the agent with accurate and robust position estimates. The adopted approach solves a major problem that severely limits the accuracy of the position estimates that ordinary geometric algorithms provide when the beacons are positioned to maximize line-of-sight coverage. Experimental results confirm that the proposed algorithm provides position estimates that are independent of the positions of the beacons, and they show that the algorithm outperforms a well-known geometric algorithm.
机译:在室内环境中提供高级位置的服务是基于估计移动设备的位置具有足够的准确性和鲁棒性的可能性。允许在移动设备上托管的软件代理估计其设备在已知的室内环境中估计其设备位置的算法在已知位置安装在环境中的固定信标中的普通假设下。而不是利用几何考虑来估计设备的位置,而是所提出的算法首先将定位问题转换为相关优化问题,然后通过间隔算法解决,以便以准确且稳健的位置估计来提供代理。所采用的方法解决了一个主要问题,严重限制了普通几何算法提供当信标被定位以最大化视线覆盖范围时的位置估计的准确性。实验结果证实,该算法提供了独立于信标的位置的位置估计,并且他们表明该算法优于一种众所周知的几何算法。

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