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首页> 外文期刊>Control of Network Systems, IEEE Transactions on >Globally Convergent Distributed Network Localization Using Locally Measured Bearings
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Globally Convergent Distributed Network Localization Using Locally Measured Bearings

机译:全局收敛分布式网络本地化使用本地测量轴承

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This paper studies the problem of bearing-based network localization, which aims to estimate the absolute positions of the nodes in a network by using the inter-node bearings measured in each node's local reference frame and the absolute positions of a small number of nodes called anchors. In the first part of the paper, we propose a continuous-time localization algorithm, which consists of coupled orientation and position estimation procedures. Compared to the existing works, the proposed algorithm has a concise form and guarantees global estimation convergence. In the second part of the paper, we study the discrete-time case which is still an open problem till now. We fill this gap by proposing a discrete-time localization algorithm to globally localize three-dimensional networks using locally measured bearings. The discrete-time algorithm does not require designing sufficiently small step sizes to ensure convergence. Numerical simulation is presented to verify the proposed algorithms.
机译:本文研究了基于轴承的网络本地化问题,其目的是通过使用在每个节点的本地参考帧中测量的节点轴承和称为少量节点的少量节点的绝对位置来估计网络中节点的绝对位置锚点。在纸张的第一部分中,我们提出了一种连续时间定位算法,该算法包括耦合方向和位置估计程序。与现有的作品相比,所提出的算法具有简明的形式并保证全球估算汇聚。在论文的第二部分,我们研究了直到现在的离散时间案例仍然是一个公开问题。我们通过提出使用本地测量轴承全局定位三维网络的离散时间定位算法来填补这个差距。离散时间算法不需要设计足够小的步长来确保收敛。提出了数值模拟以验证所提出的算法。

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