Implementation of orthogonal time frequency space modulation for wireless communications
US-12177057-B2 · Dec 24, 2024 · US
US9851235B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9851235-B2 |
| Application number | US-201314399211-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 25, 2013 |
| Priority date | May 9, 2012 |
| Publication date | Dec 26, 2017 |
| Grant date | Dec 26, 2017 |
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An apparatus for determining and/or monitoring at least one process variable of a medium in a container or pipeline, including a resonator, which is in contact with an interior of the container or the pipeline, an active element for producing a high-frequency signal in the resonator and an electronics unit, which is embodied to receive from a unit formed of the resonator and the active element an electrical output signal. The electrical output signal is evaluated with reference to frequency.
Opening claim text (preview).
The invention claimed is: 1. An apparatus for determining and/or monitoring a limit level or a dielectric constant of a medium in a container or pipeline, comprising: a resonator, which is in contact with the medium; an active element for producing a high-frequency signal in said resonator; and an electronics unit, which is embodied to receive from a unit formed of said resonator and said active element an electrical output signal, and to evaluate the output signal with reference to frequency, characterized in that the electronics unit is embodied to determine the frequency of the output signal and to figure from the frequency, the dielectric constant of the medium, and/or the electronics unit is embodied to detect a change of the frequency of the output signal and based on the change to detect a change of the limit level of the medium, wherein said resonator at least sectionally bounds the interior of the container or pipeline via interpositioning of an electrically insulating, process isolating layer. 2. The apparatus as claimed in claim 1 , wherein: said resonator is embodied as a hollow conductor or as a coaxial probe, with an inner conductor and an outer conductor coaxially surrounding said inner conductor. 3. The apparatus as claimed in claim 1 , wherein: said resonator is embodied as a microstrip transmission line or as a patch antenna. 4. The apparatus as claimed in claim 1 , wherein: said electronics unit includes a mixer for converting the output signal into a low-frequency signal. 5. The apparatus as claimed in claim 4 , further comprising: a second resonator arranged neighboring said resonator, which does not contact the medium and which serves for producing a reference signal; and said mixer produces a temperature compensated signal from said output signal and said reference signal. 6. The apparatus as claimed in claim 1 , wherein: said electronics unit includes a filter, which is fed said output signal, and which is designed in such a manner that the amplitude of said output signal of said filter is uniquely related to the frequency of said output signal of said oscillator. 7. The apparatus as claimed in claim 1 , wherein: said electronics unit is embodied to detect a change of the frequency of said output signal and based on the change to detect the change of the limit level of the medium. 8. The apparatus as claimed in claim 1 , wherein: furnished in said electronics unit is at least one limit value for the frequency of said output signal; and said electronics unit is embodied to compare the frequency of said output signal with the limit value and to produce an alarm signal, when the frequency reaches the limit value. 9. The apparatus as claimed in claim 1 , wherein: said electronics unit is embodied to determine the frequency of said output signal and to figure from that the dielectric constant of the medium.
Electromagnetic waves · CPC title
by observing the transmission of wave or particle radiation through the material · CPC title
mounting arrangements of probes · CPC title
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