Electrical and Computer Engineering Department, Northeastern University, Boston, USA.
Sci Rep. 2021 Feb 12;11(1):3782. doi: 10.1038/s41598-021-82894-x.
Massive deployments of wireless sensor nodes (WSNs) that continuously detect physical, biological or chemical parameters are needed to truly benefit from the unprecedented possibilities opened by the Internet-of-Things (IoT). Just recently, new sensors with higher sensitivities have been demonstrated by leveraging advanced on-chip designs and microfabrication processes. Yet, WSNs using such sensors require energy to transmit the sensed information. Consequently, they either contain batteries that need to be periodically replaced or energy harvesting circuits whose low efficiencies prevent a frequent and continuous sensing and impact the maximum range of communication. Here, we report a new chip-less and battery-less tag-based WSN that fundamentally breaks any previous paradigm. This WSN, formed by off-the-shelf lumped components on a printed substrate, can sense and transmit information without any need of supplied or harvested DC power, while enabling full-duplex transceiver designs for interrogating nodes rendering them immune to their own self-interference. Also, even though the reported WSN does not require any advanced and expensive manufacturing, its unique parametric dynamical behavior enables extraordinary sensitivities and dynamic ranges that can even surpass those achieved by on-chip sensors. The operation and performance of the first implementation of this new WSN are reported. This device operates in the Ultra-High-Frequency range and is capable to passively and continuously detect temperature changes remotely from an interrogating node.
大规模部署无线传感器节点 (WSN) 以持续检测物理、生物或化学参数,这对于充分利用物联网 (IoT) 带来的前所未有的可能性至关重要。最近,通过利用先进的片上设计和微制造工艺,已经展示了具有更高灵敏度的新型传感器。然而,使用此类传感器的 WSN 需要能量来传输感测信息。因此,它们要么包含需要定期更换的电池,要么包含能量收集电路,其低效率会阻止频繁和连续的感测,并影响通信的最大范围。在这里,我们报告了一种基于新的无芯片和无电池标签的 WSN,它从根本上打破了以往的任何范式。这种 WSN 由印刷衬底上的现成集总元件组成,无需任何直流电源即可进行感测和传输信息,同时还支持全双工收发器设计,从而使节点能够免受自身自干扰的影响。此外,尽管所报道的 WSN 不需要任何先进和昂贵的制造,但它独特的参数动态行为使其能够实现非凡的灵敏度和动态范围,甚至超过片上传感器所能实现的灵敏度和动态范围。本文报告了这种新型 WSN 的第一个实现的操作和性能。该器件在超高频范围内工作,能够从询问节点远程被动且连续地检测温度变化。