Department of Engineering, University of Salento, Via Monteroni, 73100 Lecce, Italy.
Sensors (Basel). 2022 Feb 8;22(3):1284. doi: 10.3390/s22031284.
Acoustic communications are experiencing renewed interest as alternative solutions to traditional RF communications, not only in RF-denied environments (such as underwater) but also in areas where the electromagnetic (EM) spectrum is heavily shared among several wireless systems. By introducing additional dedicated channels, independent from the EM ones, acoustic systems can be used to ensure the continuity of some critical services such as communication, localization, detection, and sensing. In this paper, we design and implement a novel acoustic system that uses only low-cost off-the-shelf hardware and the transmission of a single, suitably designed signal in the inaudible band (18-22 kHz) to perform integrated sensing (ranging) and communication. The experimental testbed consists of a common home speaker transmitting acoustic signals to a smartphone, which receives them through the integrated microphone, and of an additional receiver exploiting the same signals to estimate distance information from a physical obstacle in the environment. The performance of the proposed dual-function system in terms of noise, data rate, and accuracy in distance estimation is experimentally evaluated in a real operational environment.
声通信作为传统射频通信的替代解决方案,正重新受到关注,不仅在射频屏蔽环境(如水下)中如此,在电磁频谱被多个无线系统大量共享的区域中也是如此。通过引入额外的专用信道,独立于电磁信道,声系统可用于确保一些关键服务(如通信、定位、检测和感测)的连续性。在本文中,我们设计并实现了一种新颖的声系统,该系统仅使用低成本的现成硬件和在可听频带(18-22 kHz)之外传输单个经过适当设计的信号,以执行集成感测(测距)和通信。实验测试台由一个普通的家用扬声器向智能手机发送声信号组成,智能手机通过集成麦克风接收信号,还有一个额外的接收器利用相同的信号来估计环境中物理障碍物的距离信息。在实际操作环境中,从噪声、数据速率和距离估计精度方面对所提出的双功能系统的性能进行了实验评估。