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Metal-length sensor with antenna resonant detector for prescription guidance of oral pill medication

机译:带天线共振检测器的金属长度传感器,用于口服药的处方指导

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A method of measuring the length of a small piece of metal without any physical contact has been developed. The metal can be considered to be an antenna with a resonant frequency that depends on its electrical length. When two pieces of metal are placed near each other, they are coupled via electromagnetic waves in the radio frequency (RF) region; and they influence each other by means of energy transfer. If one piece of metal is driven by an RF source, energy is transferred to the other piece, even if the pieces are not physically touching each other. The energy transfer is efficient when the frequency of the RF source matches the resonant frequency of the second piece of metal. If the voltage standing wave ratio (VSWR) of the RF source side is monitored, a clear dip in the VSWR curve is observed at the resonant frequency of the second piece of metal because of energy transfer. That frequency can be used to calculate the length of the second piece of metal. A new sensing antenna that provides efficient coupling to the target and is fairly insensitive to the far environment has been developed with the goal of making a practical system. A scanning RF signal generator and a VSWR detection unit were also developed for the experiments and were housed in a small, handy module. As a practical application, a system for detecting the removal of pills from thermoformed blister packaging was developed that can help to ensure that a person takes the proper amount of medication at the proper times.
机译:已经开发出一种在没有任何物理接触的情况下测量一小块金属的长度的方法。可以将金属视为谐振频率取决于其电气长度的天线。当两块金属彼此靠近放置时,它们通过电磁波在射频(RF)区域耦合;它们通过能量传递相互影响。如果一块金属是由射频源驱动的,则能量会转移到另一块金属上,即使这些金属块之间没有物理接触。当射频源的频率与第二块金属的谐振频率匹配时,能量传输是有效的。如果监视射频源侧的电压驻波比(VSWR),则由于能量转移,在第二块金属的谐振频率处会观察到VSWR曲线的明显下降。该频率可用于计算第二块金属的长度。为了形成实用的系统,已经开发了一种新型的感应天线,可以有效地耦合到目标,并且对远距离环境不敏感。还为该实验开发了扫描射频信号发生器和VSWR检测单元,并将其安装在方便的小型模块中。在实际应用中,开发了一种用于检测从热成型泡罩包装中去除药丸的系统,该系统可以帮助确保一个人在适当的时间服用适当量的药物。

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