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Decentralized Positioning Algorithm for Relative Nodes Localization in Wireless Body Area Networks

机译:无线体域网中相对节点定位的分散定位算法

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Wireless Body Area Networks (WBAN) can offer motion capture capabilities through peer-to-peer ranging and on-body nodes positioning, by relying on transmitted signals and data packets. In this paper, we describe a solution to localize wireless nodes relatively to a body-strapped Local Coordinate System (LCS). In particular, we consider coupling a Constrained Distributed Weighted Multi-Dimensional Scaling algorithm (CDWMDS), which asynchronously estimates the nodes' locations under geometric constraints related to fixed-length links, with new messages censoring, location updates scheduling and forced measurements symmetry. The idea is to mitigate error propagation (e.g. with respect to the fastest nodes), as well as harmful effects caused by the loss of critical packets. We also introduce a real beacon-aided Time Division Multiple Access (TDMA) scheme to suitably support both peer-to-peer ranging and decentralized positioning transactions under real-time constraints. Simulation results are provided to assess the performance of the proposed solution for various levels of connectivity and ranging quality, showing interesting gains on the average location error per node under moderate pedestrian mobility. Comparisons are finally provided with a more conventional centralized and synchronous Multidimensional Scaling (MDS) algorithm that would require completing the matrix of measured distances under partial network connectivity.
机译:无线体域网(WBAN)可以通过对等测距和体上节点定位(依靠传输的信号和数据包)来提供运动捕获功能。在本文中,我们描述了一种相对于身体束缚的本地坐标系(LCS)定位无线节点的解决方案。特别是,我们考虑将约束分布式加权多维比例缩放算法(CDWMDS)与新消息审查,位置更新调度和强制测量对称性相结合,该算法异步地估计与定长链接相关的几何约束下的节点位置。该想法是减轻错误传播(例如,相对于最快的节点而言)以及由关键分组的丢失引起的有害影响。我们还介绍了一种真正的信标辅助时分多址(TDMA)方案,以在实时约束下适当地支持点对点测距和分散式定位交易。提供了仿真结果,以评估所提出解决方案在各种级别的连通性和测距质量下的性能,显示了在中等行人移动性下每个节点的平均位置误差的有趣收益。最终,提供了更为常规的集中式和同步多维缩放(MDS)算法进行比较,该算法需要在部分网络连接下完成测量距离矩阵。

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