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An improved flip ambiguity detection algorithm in wireless sensor networks node localization

机译:无线传感器网络节点定位中的改进的翻转歧义检测算法

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To detect a node flip ambiguity in range-based wireless network node localization, Wang et al. have proved that the flip ambiguity detection is equal to whether there is a straight line intersecting with all range error circles of reference node, which is called the existence of intersecting line (EIL) problem. To solve the EIL problem under equal radii, a convex hull algorithm proposed by Wang et al. has low computational complexity. However, for unequal radii, a common tangent algorithm (CTA) proposed by Wang et al. has high computational complexity. In order to deal with the high computational complexity of the common tangent algorithm, on the basis of orthogonal projection theory, we prove that the EIL problem is equal to determine whether there is a straight line, which enables any two circles to have overlapping orthogonal projection onto the line. In fact, the straight line is perpendicular to the straight line of EIL problem. According to this proof, we propose an orthogonal projection algorithm (OPA) to detect nodes flip ambiguities for unequal radii. The algorithm uses the coordinate transformation to simplify the computation process. The simulation results demonstrate that OPA and CTA have exactly the same detection results, but the computational complexity is greatly reduced.
机译:为了在基于范围的无线网络节点定位中检测节点翻转模糊,Wang等人。已经证明,翻转模糊检测等于是否存在与参考节点的所有范围误差圆相交的直线,这被称为相交线(EIL)问题的存在。为了在等式半径下解决EIL问题,Wang等人提出的凸船体算法。计算复杂性低。然而,对于不平等的半径,Wang等人提出的常见切线算法(CTA)。具有高计算复杂性。为了处理常见切线算法的高计算复杂性,在正交投影理论的基础上,我们证明了EIL问题等于确定是否存在直线,这使得任何两个圆圈都具有重叠的正交投影到了线上。实际上,直线垂直于EIL问题的直线。根据该证据,我们提出了一种正交投影算法(OPA)来检测不相等的半径的节点FLIP模糊。该算法使用坐标变换来简化计算过程。仿真结果表明,OPA和CTA具有完全相同的检测结果,但计算复杂性大大降低。

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