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Non-Parametric Approach of Video Capsule Endoscope Localization Using Suboptimal Method of Position Bounded CWCL

机译:基于位置约束CWCL次优方法的视频胶囊内窥镜定位非参数方法

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For proper diagnosis, location of the wireless video capsule endoscope is required to be known by the physicians. In this paper, we propose an algorithm of localizing the capsule using path loss-based calibrated weighted centroid localization (CWCL). The main challenge in path loss-based localization is the highly randomness of measured path loss due to shadow fading and multi-path propagation effects of human body channel. To address the randomness in the measured path loss, we propose two methods of path loss estimation using Gaussian weighted average filter and the multiple input multiple output diversity scheme. Then, we calculate the weight of the sensor receiver position using the estimated path loss. Finally, the position of the capsule is estimated using position-bounded CWCL. We propose a realistic suboptimal method of estimating the calibration coefficient and also compute the optimal value of coefficient to set the benchmark. Additionally, we propose two boundary conditions on the estimated positions to improve the localization accuracy. We simulate our proposed algorithms using MATLAB to validate the accuracy and observe significant improvements without any prior knowledge of channel parameters. The proposed algorithms improve the accuracy up to 5.14-mm root mean square error and outperform the existing literature.
机译:为了进行正确的诊断,医师必须知道无线视频胶囊内窥镜的位置。在本文中,我们提出了一种使用基于路径损耗的校准加权质心定位(CWCL)定位胶囊的算法。基于路径损耗的定位的主要挑战是由于阴影衰减和人体通道的多路径传播效应而导致的测量路径损耗的高度随机性。为了解决所测路径损耗中的随机性,我们提出了两种使用高斯加权平均滤波器和多输入多输出分集方案进行路径损耗估计的方法。然后,我们使用估计的路径损耗来计算传感器接收器位置的权重。最后,使用位置限制的CWCL估算胶囊的位置。我们提出了一种估算校准系数的现实的次优方法,并且还计算了系数的最佳值以设置基准。另外,我们在估计位置上提出了两个边界条件,以提高定位精度。我们使用MATLAB仿真提出的算法,以验证准确性并观察到显着的改进,而无需任何通道参数的先验知识。所提出的算法可将精度提高到5.14 mm的均方根误差,并且优于现有文献。

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