Claims
- 1. A system for at least detecting accumulation of types of material, including combinations of types, upon multiple areas of a surface concurrently, comprising:
at least one first conductor of electromagnetic energy having a characteristic impedance, a source end, a distal end configured to have an impedance different from said characteristic impedance, and a length much greater than any of said first conductor's other dimensions, at least one electromagnetically conducting ground plane electromagnetically isolated from and adjacent said at least one first conductor; and at least one sub-system, in operable communication with said source end of said first electromagnetic conductor, for providing to and processing analog signals from said at least one first conductor, said processing to include reflections of said analog signals from said at least one first conductor, wherein said processing yields information for decision making.
- 2. The system of claim 1 in which said first electromagnetic conductor is a transmission line.
- 3. The system of claim 3 in which said transmission line is selected from the group consisting of: conducting tape electromagnetically insulated on one side, striplines, electromagnetically insulated wires, and substrates having at least a dielectric layer and an electromagnetically conducting layer.
- 4. The system of claim 1 in which said at least part of said surface comprises said at least one electromagnetically conducting ground plane.
- 6. The system of claim 1 in which said sub-system comprises at least one time domain reflectometer (TDR).
- 7. The system of claim 6 in which said TDR is a commercial-off-the-shelf (COTS) TDR.
- 8. The system of claim 6 in which said TDR comprises:
a narrow pulse generator for providing pulsed analog electromagnetic signals as said signals; a circulator in operable communication with at least said narrow pulse generator for coupling said pulsed analog electromagnetic signals to said at least one first conductor and coupling said reflections from said conductor to said TDR; and a processor for processing said reflections and at least portions of said signals and displaying results of said processing.
- 9. The system of claim 9 in which said processor comprises an oscilloscope.
- 10. The system of claim 1 in which said sub-system comprises at least one FM-CW reflectometer.
- 11. The system of claim 10 in which said at least one FM-CW reflectometer comprises:
a linear sweep generator for generating said analog signals; a circulator in operable communication with at least said linear sweep generator for coupling said analog signals to said at least one first conductor and coupling said reflection from said conductor to said FM-CW reflectometer; a mixer in operable communication with said circulator for combining said at least one reflection with a portion of said analog signal to yield a first output signal; a low pass filter in operable communication with said mixer for passing only the low frequency spectra in said first output signal, yielding a second output signal having a frequency spectra in the audio range; a high pass audio filter in operable communication with said low pass filter for passing only the high frequency spectra of said second output signal, yielding a third output signal having a frequency spectra in the high end of the audio range; an audio amplifier in operable communication with said high pass audio filter for amplifying said third output signal, yielding a fourth output signal; an analog-to-digital converter in operable communication with said audio amplifier for converting said fourth output signal from an analog to a digital configuration, yielding a fifth output signal; a digital signal processor in operable communication with said analog-to-digital converter for further processing said fifth output signal to extract data on features of said reflected analog signal; and a computer in operable communication with said digital signal processor for comparing said data on features of said reflected analog signal with at least one reference and displaying results of said comparison, wherein said FM-CW reflectometer enables alerting to accumulation of at least one type of material on said surface.
- 12. The system of claim 1 in which a single said sub-system operates multiple said at least one conductors of electromagnetic energy by multiplexing said analog signals and at least said reflections from said distal end.
- 13. The system of claim 1 in which said at least one electromagnetically isolated ground plane comprises a second conductor similar to said first conductor, wherein said first and second conductors are disposed in the same plane and parallel at a pre-specified distance one to the other on at least part of said surface.
- 14. A method for detecting accumulation of material on multiple areas of a surface concurrently, comprising:
disposing on said surface at least one transmission line having a characteristic impedance, a source end, and a distal end having an impedance different from said characteristic impedance, wherein said at least one transmission line is electromagnetically isolated from said surface; providing at least one electromagnetically conducting ground plane adjacent said at least one transmission line; providing at least one analog electromagnetic signal at said source end, wherein portions of said analog electromagnetic signal are distinguishable over at least pre-specified time intervals; receiving at said source end at least one reflection of said at least one analog electromagnetic signal from at least said distal end; and extracting at least one quantifiable feature from said at least one reflection; wherein at least one value associated with said at least one quantifiable feature may be compared to at least one reference value to at least detect at least one material present in at least a pre-specified amount on said surface.
- 15. The method of claim 14 in which said analog electromagnetic signal is a pulsed signal.
- 16. The method of claim 15 in which said pulsed signal is provided at a peak signal level of between 0.05 V and 10 V, a carrier frequency of between 1 MHz and 40 GHz, a pulse width of between 0.1 nanosec and 10 millisec, and at a pulse repetition frequency (PRF) of between 0.01 Hz and 1 MHz.
- 17. The method of claim 14 in which said analog electromagnetic signal is a frequency modulated continuous wave (FM-CW) signal provided on an RF carrier frequency.
- 18. The method of claim 17 in which said FM-CW signal is provided at a power level between 1 mW and 10 W, at a carrier center frequency of between 1 MHz and 40 GHz, at a bandwidth of between 10 and 60% of carrier center frequency and is swept linearly in carrier frequency at a pre-specified period of between 100 millisec to 10 millisec.
- 19. The method of claim 14 in which said at least part of said surface comprises said at least one electromagnetically conducting ground plane.
- 20. The method of claim 14 in which said at least one electromagnetically isolated ground plane comprises a second transmission line similar to said first transmission line, wherein said first and second transmission lines are disposed in the same plane and parallel at a pre-specified distance one to the other on at least part of said surface.
- 21. The method of claim 14 in which said processing provides at least a measure of the time interval for a known portion of said analog electromagnetic signal to travel from said source end to said distal end and return to said source end as at least a partial reflection from said distal end.
- 22. The method of claim 14 in which said processing further provides at least a measure of the time for a known portion of said analog electromagnetic signal to travel from said source end to at least a first location along the length of said transmission line and the at least partial reflection of at least part of said known portion back to said source end,
wherein said at least a first location is defined by the closest boundary to said source end of a first region around said transmission line, said first region incorporating at least one material other than the medium surrounding said transmission line in a reference state.
- 23. The method of claim 14 in which said processing further employs a spectrum analysis algorithm to extract said at least one feature.
- 24. The method of claim 14 further comparing said at least one feature of said at least one reflection to at least one reference to yield additional information for decision making.
- 25. The method of claim 24 in which said additional information is selected from the group consisting of: thickness of accumulation upon said surface, location of accumulation upon said surface, type of material accumulating upon said surface, mixes of material types accumulating upon said surface, rate of accumulation of material upon said surface, and combinations thereof.
- 26. The method of claim 14 further providing for conveying said information for decision making to a decision maker.
- 27. The method of claim 26 in which said decision maker is a device.
- 28. The method of claim 26 in which said decision maker is a person.
- 29. The method of claim 14 further providing for predicting the occurrence of said accumulation.
STATEMENT REGARDING FEDERALLY SPONSORED RESEARCH OR DEVELOPMENT
[0001] The invention described herein may be manufactured and used by or for the government of the United States of America for governmental purposes without the payment of any royalties thereon or therefor.