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首页> 外文期刊>The Journal of Navigation >An Improved ICCP Matching Algorithm for use in an Interference Environment during Geomagnetic Navigation
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An Improved ICCP Matching Algorithm for use in an Interference Environment during Geomagnetic Navigation

机译:地磁导航干扰环境中改进的ICCP匹配算法

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摘要

The Iterated Closest Contour Point (ICCP) algorithm is widely used in geomagnetic navigation. In order to enhance the anti-interference performance of the ICCP, an improved algorithm is proposed. First, the principle of delta modulation is introduced to generate a geomagnetic matching sequence according to the magnetic fluctuations, this assists finding the optimal quantitative step and matching length; thus, the algorithm's accuracy and real-time performance are improved. Second, in order to solve the problem of geomagnetic matching under an interference environment, a Probability Data Association (PDA) algorithm based on regenerated measurements is adopted. The ideal magnetic value is regarded as a target, and the measured values within the confidence region are taken as the effective measurements of the target. Each of them will give an estimation of the vehicle's position. Considering the constraints of a vehicle's kinematic performance, its final position can be obtained by fusing all effective estimations with the PDA algorithm. Simulation and semi-physical experiments have verified the feasibility and effectiveness of the proposed algorithm. The Regenerated Measurements (RM)-PDA algorithm shows better performance and can be used in practical applications.
机译:迭代最近轮廓点(ICCP)算法广泛用于地磁导航。为了提高ICCP的抗干扰性能,提出了一种改进的算法。首先,引入增量调制原理,根据磁波动产生地磁匹配序列,这有助于寻找最佳的定量步长和匹配长度。从而提高了算法的准确性和实时性。其次,为了解决干扰环境下的地磁匹配问题,采用了基于再生测量的概率数据关联算法。理想磁值被视为目标,置信区域内的测量值被视为目标的有效测量值。他们每个人都会给出车辆位置的估计。考虑到车辆运动性能的限制,可以通过将所有有效估计值与PDA算法融合来获得其最终位置。仿真和半物理实验验证了该算法的可行性和有效性。再生测量(RM)-PDA算法显示出更好的性能,可以在实际应用中使用。

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