Segers Laurent, Van Bavegem David, De Winne Sam, Braeken An, Touhafi Abdellah, Steenhaut Kris
Department of Industrial Sciences and Technology (INDI), Vrije Universiteit Brussel, Pleinlaan 2, Elsene 1050, Belgium.
Department of Electronics and Informatics (ETRO), Vrije Universiteit Brussel, Pleinlaan 2, Elsene 1050, Belgium.
Sensors (Basel). 2015 Jul 30;15(8):18641-65. doi: 10.3390/s150818641.
This paper describes a new approach and implementation methodology for indoor ranging based on the time difference of arrival using code division multiple access with ultrasound signals. A novel implementation based on a field programmable gate array using finite impulse response filters and an optimized correlation demodulator implementation for ultrasound orthogonal signals is developed. Orthogonal codes are modulated onto ultrasound signals using frequency shift keying with carrier frequencies of 24.5 kHz and 26 kHz. This implementation enhances the possibilities for real-time, embedded and low-power tracking of several simultaneous transmitters. Due to the high degree of parallelism offered by field programmable gate arrays, up to four transmitters can be tracked simultaneously. The implementation requires at most 30% of the available logic gates of a Spartan-6 XC6SLX45 device and is evaluated on accuracy and precision through several ranging topologies. In the first topology, the distance between one transmitter and one receiver is evaluated. Afterwards, ranging analyses are applied between two simultaneous transmitters and one receiver. Ultimately, the position of the receiver against four transmitters using trilateration is also demonstrated. Results show enhanced distance measurements with distances ranging from a few centimeters up to 17 m, while keeping a centimeter-level accuracy.
本文介绍了一种基于码分多址利用超声信号到达时间差进行室内测距的新方法和实现方法。开发了一种基于现场可编程门阵列的新颖实现方式,该方式使用有限脉冲响应滤波器以及针对超声正交信号的优化相关解调器实现。使用载波频率为24.5kHz和26kHz的频移键控将正交码调制到超声信号上。这种实现方式增强了对多个同时发射机进行实时、嵌入式和低功耗跟踪的可能性。由于现场可编程门阵列提供了高度的并行性,最多可同时跟踪四个发射机。该实现方式最多需要Spartan-6 XC6SLX45器件30%的可用逻辑门,并通过几种测距拓扑结构对其准确性和精度进行了评估。在第一种拓扑结构中,评估了一个发射机与一个接收机之间的距离。之后,对两个同时发射机与一个接收机之间进行了测距分析。最终,还展示了利用三边测量法确定接收机相对于四个发射机的位置。结果表明,在距离范围从几厘米到17米的情况下,距离测量得到了增强,同时保持了厘米级的精度。