论文标题

部分可观测时空混沌系统的无模型预测

Techtile: a Flexible Testbed for Distributed Acoustic Indoor Positioning and Sensing

论文作者

Delabie, Daan, Cox, Bert, De Strycker, Lieven, Van der Perre, Liesbet

论文摘要

拟议的基础设施名为Techtile,提供了独特的研发设施,因为分散的电子设备可以在3D中传输和捕获多种信号。讨论了从平滑原型到商业产品增强设计过程的特定可用设备。衡量房间的声学参数,尤其是混响和环境噪声,以考虑到未来创新的室内定位和传感系统的这些。这可能会对准确性和精度产生积极影响。木制结构代表了声音声音的挑战性空间,最大测量的RT60值为5kHz,可与演讲或小型音乐厅的混响属性相媲美。对于超声波,由于当前的环境噪声源,这是一项挑战。通常,就声音压力水平(SPL)而言,可以将技术室与家庭或安静的办公环境进行比较。除了声学特性外,还将讨论可能的研发选择,并结合相关的挑战。描述的许多设计可通过开源提供。

The proposed infrastructure, named Techtile, provides a unique R&D facility as features dispersed electronics enables transmission and capturing of a multitude of signals in 3D. Specific available equipment that enhances the design process from smooth prototyping to a commercial product is discussed. The acoustic parameters of the room, particularly the reverberation and ambient noise, are measured to take these into account for future innovative acoustic indoor positioning and sensing systems. This can have a positive influence on the accuracy and precision. The wooden construction represents an acoustically challenging room for audible sound with a maximum measured RT60 value of 1.17s at 5kHz, which is comparable to the reverberation properties of a lecture or small concert hall. For ultrasound it is rather challenging due to the present ambient noise sources. In general, the Techtile room can be compared with a home or quiet office environment, in terms of sound pressure levels (SPLs). In addition to the acoustic properties, possible research and development options are discussed in combination with the associated challenges. Many of the designs described are available through open source.

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