Buyle Chesney, De Strycker Lieven, Van der Perre Liesbet
KU Leuven, WaveCore, Department of Electrical Engineering (ESAT), Ghent Technology Campus, 9000 Ghent, Belgium.
Sensors (Basel). 2023 Sep 20;23(18):7997. doi: 10.3390/s23187997.
Accurately positioning energy-constrained devices in indoor environments is of great interest to many professional, care, and personal applications. Hybrid RF-acoustic ranging systems have shown to be a viable technology in this regard, enabling accurate distance measurements at ultra-low energy costs. However, they often suffer from self-interference due to multipaths in indoor environments. We replace the typical single loudspeaker beacons used in these systems with a phased loudspeaker array to promote the signal-to-interference-plus-noise ratio towards the tracked device. Specifically, we optimize the design of a low-cost uniform planar array (UPA) through simulation to achieve the best ranging performance using ultrasonic chirps. Furthermore, we compare the ranging performance of this optimized UPA configuration to a traditional, single-loudspeaker system. Simulations show that vertical phased-array configurations guarantee the lowest ranging errors in typical shoe-box environments, having a limited height with respect to their length and width. In these cases, a P50 ranging error of around 3 cm and P95 ranging error below 30 cm were achieved. Compared to a single-speaker system, a 10 × 2 vertical phased array was able to lower the P80 and P95 up to an order of magnitude.
在室内环境中精确定位能量受限设备对许多专业、护理和个人应用都极具吸引力。混合射频 - 声学测距系统在这方面已被证明是一种可行的技术,能够以超低的能量成本进行精确的距离测量。然而,由于室内环境中的多径效应,它们经常受到自干扰的影响。我们用相控扬声器阵列取代这些系统中使用的典型单扬声器信标,以提高朝向被跟踪设备的信干噪比。具体而言,我们通过仿真优化了低成本均匀平面阵列(UPA)的设计,以使用超声啁啾实现最佳测距性能。此外,我们将这种优化后的UPA配置的测距性能与传统的单扬声器系统进行了比较。仿真表明,在典型的鞋盒环境中,垂直相控阵配置保证了最低的测距误差,其高度相对于长度和宽度有限。在这些情况下,实现了约3厘米的P50测距误差和低于30厘米的P95测距误差。与单扬声器系统相比,10×2垂直相控阵能够将P80和P95降低一个数量级。