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US20180166762A1 - Site preparation for guided surface wave transmission in a lossy media - Google Patents

Site preparation for guided surface wave transmission in a lossy media
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Publication number
US20180166762A1
US20180166762A1US15/889,750US201815889750AUS2018166762A1US 20180166762 A1US20180166762 A1US 20180166762A1US 201815889750 AUS201815889750 AUS 201815889750AUS 2018166762 A1US2018166762 A1US 2018166762A1
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US
United States
Prior art keywords
guided surface
conducting medium
lossy conducting
surface waveguide
probe
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Abandoned
Application number
US15/889,750
Inventor
James F. Corum
Kenneth L. Corum
Basil F. Pinzone, Jr.
James D. Lilly
Stephen W. Wilson
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Quantum Wave LLC
Original Assignee
CPG Technologies LLC
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Publication date
Application filed by CPG Technologies LLCfiledCriticalCPG Technologies LLC
Priority to US15/889,750priorityCriticalpatent/US20180166762A1/en
Publication of US20180166762A1publicationCriticalpatent/US20180166762A1/en
Assigned to CPG TECHNOLOGIES, LLCreassignmentCPG TECHNOLOGIES, LLCASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: CORUM, JAMES F., CORUM, KENNETH L., PINZONE, BASIL F., JR., LILLY, JAMES D., WILSON, STEPHEN W.
Assigned to QUANTUM WAVE, LLCreassignmentQUANTUM WAVE, LLCASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: CPG TECHNOLOGIES, LLC
Abandonedlegal-statusCriticalCurrent

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Abstract

Aspects of a guided surface waveguide probe site and the preparation thereof are described. In various embodiments, the guided surface waveguide probe site may include a propagation interface including a first region and a second region, and a guided surface waveguide probe configured to launch a guided surface wave along the propagation interface. In one aspect of the embodiments, at least a portion of the first region may be prepared to more efficiently launch or propagate the guided surface wave. Among embodiments, the portion of the first region, which may be composed of the Earth, may be treated or mixed with salt, gypsum, sand, or gravel, for example, among other compositions of matter. In other embodiments, the portion of the first region may be covered, insulated, irrigated, or temperature-controlled, for example. By preparing the site, a guided surface wave may be more efficiently launched and/or propagated.

Description

Claims (20)

Therefore, the following is claimed:
1. A probe site, comprising:
a propagation interface including a lossy conducting medium that extends along the propagation interface; and
a guided surface waveguide probe configured to launch a guided surface wave along the propagation interface, the guided surface waveguide probe including a charge terminal elevated at a height over the lossy conducting medium, a ground stake in the lossy conducting medium, and a feed network coupled between the ground stake and the charge terminal,
wherein a portion of the lossy conducting medium is prepared to launch the guided surface wave.
2. The probe site according toclaim 1, wherein the guided surface waveguide probe is configured to generate at least one resultant field that synthesizes a wave front having a complex Brewster angle of incidence at a crossover distance from the guided surface waveguide probe in the lossy conducting medium.
3. The probe site according toclaim 1, wherein the feed network is configured to provide a phase delay that matches a wave tilt angle associated with a complex Brewster angle of incidence at a crossover distance from the guided surface waveguide probe in the lossy conducting medium.
4. The probe site according toclaim 3, wherein the portion of the lossy conducting medium extends to or beyond the crossover distance along the propagation interface.
5. The probe site according toclaim 1, wherein the propagation interface further includes an insulator that extends along the propagation interface.
6. The probe site according toclaim 5, wherein the lossy conducting medium comprises the Earth and the insulator comprises the atmosphere of the Earth.
7. The probe site according toclaim 1, wherein the portion of the lossy conducting medium extends into the lossy conducting medium at least to a depth of a complex image of the guided surface waveguide probe.
8. The probe site according toclaim 1, further comprising a dome covering the guided surface waveguide probe and the portion of the lossy conducting medium.
9. The probe site according toclaim 1, further comprising a layer that covers the portion of the portion of the lossy conducting medium.
10. The probe site according toclaim 1, further comprising an irrigation system that irrigates the portion of the lossy conducting medium.
11. A probe site, comprising:
a propagation interface between a first region and a second region; and
a guided surface waveguide probe configured to launch a guided surface wave along the propagation interface, the guided surface waveguide probe including a charge terminal elevated at a height over the first region and a feed network,
wherein a portion of at least one of the first region or the second region is prepared to launch the guided surface wave.
12. The probe site according toclaim 11, wherein the guided surface waveguide probe is configured to generate at least one resultant field that synthesizes a wave front having a complex Brewster angle of incidence at a crossover distance from the guided surface waveguide probe in the first region.
13. The probe site according toclaim 11, wherein the feed network is configured to provide a phase delay that matches a wave tilt angle associated with a complex Brewster angle of incidence associated with the first region in a vicinity of the guided surface waveguide probe.
14. The probe site according toclaim 11, wherein the first region comprises a lossy conducting medium and the second region comprises an insulator.
15. The probe site according toclaim 14, wherein the first region comprises the Earth and the second region comprises the atmosphere of the Earth.
16. The probe site according toclaim 11, wherein a portion of the first region includes a higher concentration of gypsum than that of the Earth in the first region.
17. The probe site according toclaim 11, further comprising a dome covering the guided surface waveguide probe.
18. The probe site according toclaim 11, further comprising a layer that covers a portion of the first region.
19. A probe site, comprising:
a propagation interface including a lossy conducting medium that extends along the propagation interface; and
a guided surface waveguide probe configured to launch a guided surface wave along the propagation interface, the guided surface waveguide probe including a charge terminal elevated at a height over the lossy conducting medium, a ground stake in the lossy conducting medium, and a feed network coupled between the ground stake and the charge terminal, wherein:
the guided surface waveguide probe is configured to generate at least one resultant field that synthesizes a wave front having a complex Brewster angle of incidence at a crossover distance from the guided surface waveguide probe in the lossy conducting medium; and
a portion of the lossy conducting medium is prepared to launch the guided surface wave.
20. The probe site according toclaim 3, wherein the portion of the lossy conducting medium extends to or beyond the crossover distance along the propagation interface.
US15/889,7502014-09-112018-02-06Site preparation for guided surface wave transmission in a lossy mediaAbandonedUS20180166762A1 (en)

Priority Applications (1)

Application NumberPriority DateFiling DateTitle
US15/889,750US20180166762A1 (en)2014-09-112018-02-06Site preparation for guided surface wave transmission in a lossy media

Applications Claiming Priority (3)

Application NumberPriority DateFiling DateTitle
US201462049138P2014-09-112014-09-11
US14/848,413US9960470B2 (en)2014-09-112015-09-09Site preparation for guided surface wave transmission in a lossy media
US15/889,750US20180166762A1 (en)2014-09-112018-02-06Site preparation for guided surface wave transmission in a lossy media

Related Parent Applications (1)

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US14/848,413ContinuationUS9960470B2 (en)2014-09-112015-09-09Site preparation for guided surface wave transmission in a lossy media

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US20180166762A1true US20180166762A1 (en)2018-06-14

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US14/848,413Active2035-10-03US9960470B2 (en)2014-09-112015-09-09Site preparation for guided surface wave transmission in a lossy media
US15/889,750AbandonedUS20180166762A1 (en)2014-09-112018-02-06Site preparation for guided surface wave transmission in a lossy media

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US14/848,413Active2035-10-03US9960470B2 (en)2014-09-112015-09-09Site preparation for guided surface wave transmission in a lossy media

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