IMEC, IDLab, Department of Information Technology, Ghent University, 9000 Ghent, Belgium.
Sensors (Basel). 2019 May 1;19(9):2041. doi: 10.3390/s19092041.
Accurate radio frequency (RF)-based indoor localization systems are more and more applied during sports. The most accurate RF-based localization systems use ultra-wideband (UWB) technology; this is why this technology is the most prevalent. UWB positioning systems allow for an in-depth analysis of the performance of athletes during training and competition. There is no research available that investigates the feasibility of UWB technology for indoor track cycling. In this paper, we investigate the optimal position to mount the UWB hardware for that specific use case. Different positions on the bicycle and cyclist were evaluated based on accuracy, received power level, line-of-sight, maximum communication range, and comfort. Next to this, the energy consumption of our UWB system was evaluated. We found that the optimal hardware position was the lower back, with a median ranging error of 22 cm (infrastructure hardware placed at 2.3 m). The energy consumption of our UWB system is also taken into account. Applied to our setup with the hardware mounted at the lower back, the maximum communication range varies between 32.6 m and 43.8 m. This shows that UWB localization systems are suitable for indoor positioning of track cyclists.
精确的射频(RF)室内定位系统在运动中越来越多地得到应用。最精确的基于 RF 的定位系统使用超宽带(UWB)技术;这就是为什么这项技术是最流行的。UWB 定位系统允许对运动员在训练和比赛中的表现进行深入分析。目前还没有研究探讨 UWB 技术在室内场地自行车运动中的可行性。在本文中,我们研究了为特定用例安装 UWB 硬件的最佳位置。根据准确性、接收功率水平、视线、最大通信范围和舒适度,评估了自行车和运动员上的不同位置。此外,还评估了我们的 UWB 系统的能耗。我们发现,最佳硬件位置是下背部,中位数测距误差为 22 厘米(基础设施硬件放置在 2.3 米处)。我们还考虑了我们的 UWB 系统的能耗。应用于我们的设置,硬件安装在下背部,最大通信范围在 32.6 米到 43.8 米之间变化。这表明 UWB 定位系统适用于场地自行车运动员的室内定位。