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A Practical Robust and Fast Method for Location Localization in Range-Based Systems

机译:一种基于范围的系统中实用鲁棒和快速的位置定位方法

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摘要

Location localization technology is used in a number of industrial and civil applications. Real time location localization accuracy is highly dependent on the quality of the distance measurements and efficiency of solving the localization equations. In this paper, we provide a novel approach to solve the nonlinear localization equations efficiently and simultaneously eliminate the bad measurement data in range-based systems. A geometric intersection model was developed to narrow the target search area, where Newton’s Method and the Direct Search Method are used to search for the unknown position. Not only does the geometric intersection model offer a small bounded search domain for Newton’s Method and the Direct Search Method, but also it can self-correct bad measurement data. The Direct Search Method is useful for the coarse localization or small target search domain, while the Newton’s Method can be used for accurate localization. For accurate localization, by utilizing the proposed Modified Newton’s Method (MNM), challenges of avoiding the local extrema, singularities, and initial value choice are addressed. The applicability and robustness of the developed method has been demonstrated by experiments with an indoor system.
机译:位置定位技术已在许多工业和民用应用中使用。实时定位精度在很大程度上取决于距离测量的质量以及求解定位方程的效率。在本文中,我们提供了一种新颖的方法来有效地解决非线性定位方程,同时消除基于距离的系统中的不良测量数据。开发了几何相交模型来缩小目标搜索范围,在该模型中,牛顿法和直接搜索法用于搜索未知位置。几何相交模型不仅为牛顿法和直接搜索法提供了一个小的有界搜索域,而且还可以自我校正不良的测量数据。直接搜索方法可用于粗略定位或小的目标搜索域,而牛顿法可用于精确定位。为了精确定位,通过使用建议的改良牛顿法(MNM),解决了避免局部极值,奇异性和初始值选择的难题。通过室内系统的实验证明了所开发方法的适用性和鲁棒性。

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