发明名称 Method for measuring fluid flow in a non-conductive pipe
摘要 A microradio is provided with a hysteretic switch to permit an optimum range increasing charging cycle, with the charging cycle being long relative to the transmit cycle. Secondly, an ensemble of microradios permits an n2 power enhancement to increase range with coherent operation. Various multi-frequency techniques are used both for parasitic powering and to isolate powering and transmit cycles. Applications for microradios and specifically for ensembles of microradios include authentication, tracking, fluid flow sensing, identification, terrain surveillance including crop health sensing and detection of improvised explosive devices, biohazard and containment breach detection, and biomedical applications including the use of microradios attached to molecular tags to destroy tagged cells when the microradios are activated. Microradio deployment includes the use of paints or other coatings containing microradios, greases and aerosols. Moreover, specialized antennas, including microcoils, mini dipoles, and staircase coiled structures are disclosed, with the use of nano-devices further reducing the size of the microradios.
申请公布号 US9011345(B2) 申请公布日期 2015.04.21
申请号 US201113183637 申请日期 2011.07.15
申请人 RadioFIDO, LLC 发明人 Brommer Karl D.;Brommer Tracey H.
分类号 A61B5/02;G01P21/00;G06K19/077;G06K19/07 主分类号 A61B5/02
代理机构 NKK Patent Law, PLLC 代理人 NKK Patent Law, PLLC
主权项 1. A method for determining fluid flow within a non-conducting pipe, comprising the steps of: entraining microradios within the flowing fluid, wherein the microradios include nano-resonators; parasitically powering the microradios entrained within the fluid; detecting emissions from the microradios; locating the positions of the detected microradios; and calculating fluid flow parameters based on the located positions of the detected microradios and time.
地址 Peterborough NH US