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Performance comparison of accelerometer calibration algorithms based on 3D-ellipsoid fitting methods

机译:基于3D椭球拟合方法的加速度计校准算法的性能比较

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摘要

Calibration of accelerometers can be reduced to 3D-ellipsoid fitting problems. Changing extrinsic factors like temperature, pressure or humidity, as well as intrinsic factors like the battery status, demand to calibrate the measurements permanently. Thus, there is a need for fast calibration algorithms, e.g. for online analyses. The primary aim of this paper is to propose a non-iterative calibration algorithm for accelerometers with the focus on minimal execution time and low memory consumption. The secondary aim is to benchmark existing calibration algorithms based on 3D-ellipsoid fitting methods. We compared the algorithms regarding the calibration quality and the execution time as well as the number of quasi-static measurements needed for a stable calibration. As evaluation criterion for the calibration, both the norm of calibrated real-life measurements during inactivity and simulation data was used. The algorithms showed a high calibration quality, but the execution time differed significantly. The calibration method proposed in this paper showed the shortest execution time and a very good performance regarding the number of measurements needed to produce stable results. Furthermore, this algorithm was successfully implemented on a sensor node and calibrates the measured data on-the-fly while continuously storing the measured data to a microSD-card.
机译:加速度计的校准可以减少到3D椭圆拟合问题。变化的外部因素(例如温度,压力或湿度)以及内部因素(例如电池状态)要求永久校准测量。因此,需要快速校准算法,例如。用于在线分析。本文的主要目的是提出一种针对加速度计的非迭代校准算法,其重点是最短的执行时间和较低的内存消耗。第二个目标是对基于3D椭球拟合方法的现有校准算法进行基准测试。我们比较了有关校准质量和执行时间以及稳定校准所需的准静态测量次数的算法。作为校准的评估标准,使用了不活动期间校准的实际测量值的规范和模拟数据。该算法显示出较高的校准质量,但是执行时间差异很大。本文提出的校准方法在产生稳定结果所需的测量次数方面显示了最短的执行时间和非常好的性能。此外,该算法已在传感器节点上成功实现,并且可以在将测量数据连续存储到microSD卡的同时即时校准测量数据。

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