CA2998536C

Communication system, guided wave switch and methods for use therewith

Abstract

Aspects of the subject disclosure may include, for example, a guided wave switch that selectively aligns an end of the first dielectric core of a first conductorless guided wave cable with an end of a selected one of a plurality of second dielectric cores of at least one second conductorless guided wave cable to facilitate coupling of the first guided waves from the first dielectric core to a selected one of the plurality of second dielectric cores. Other embodiments are disclosed.

CA2998536C, drawing sheet 1
Sheet 1 of 28

Term

10 yearsleft in the term

Expires 9 September 2036.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Expires

59 claims: 8 independent, 51 dependent

  1. 1
    CLAIMS:1. A communication system comprising: a first guided wave cable having a first dielectric core without an electrical return path configured to communicate first guided waves that are bound to the first dielectric core, wherein the first guided waves are within a non-optical frequency band;at least one second guided wave cable without an electrical return path having a plurality of second dielectric cores coupled to a corresponding plurality of antennas;and a guided wave switch configured to couple the first dielectric core to a selected one of the plurality of second dielectric cores to communicate the first guided waves from the first dielectric core to a corresponding one of the plurality of antennas.
  2. 11
    12. A communication system comprising:a first guided wave cable having a first dielectric core configured to communicate first guided waves that are bound to the first dielectric core, wherein the first guided waves are within a non-optical frequency band and propagate along the first dielectric core without requiring an electrical return path;at least one second guided wave cable without an electrical return path having a plurality of second dielectric cores coupled to a corresponding plurality of antennas;and a guided wave switch configured to couple the first dielectric core to a selected one of the plurality of second dielectric cores to communicate the first guided waves from the first dielectric core to a corresponding one of the plurality of antennas, wherein the first guided waves propagate 91 CA 2998536 2020-01-14 along the selected one of the plurality of second dielectric cores without requiring an electrical return path.
  3. 12
    13. The communication system of claim 12, wherein the guided wave switch is further configured to communicate second guided waves from the corresponding one of the plurality of antennas to the first dielectric core;and wherein the first guided wave cable is further configured to communicate the second guided waves to a radio.
  4. 20
    21. A communication system comprising:a first guided wave cable having a first dielectric core configured to propagate first guided waves without requiring an electrical return path, wherein the first guided waves are within a nonoptical frequency band;at least one second guided wave cable having a plurality of second dielectric cores coupled to a plurality of antennas;and a guided wave switch configured to couple the first dielectric core to a selected one of the plurality of second dielectric cores to communicate the first guided waves from the first dielectric core to one of the plurality of antennas via the selected one of the plurality of second dielectric cores.
  5. 21
    22. The communication system of claim 21, wherein the guided wave switch is further configured to communicate second guided waves from the corresponding one of the plurality of antennas to the first dielectric core;and wherein the first guided wave cable is further configured to communicate the second guided waves to a radio.
  6. 26
    27. The communication system of claim 26, wherein the guided wave switch couples the first guided waves through a gap between the end of the first dielectric core to the end of the selected one of the plurality of second dielectric cores.
  7. 31
    32. A communication system comprising:a first guided wave cable having a first dielectric core configured to communicate first guided waves that are bound to the first dielectric core, wherein the first guided waves are within a non-optical frequency band and propagate along the first dielectric core without requiring an electrical return path;at least one second guided wave cable without the electrical return path having a plurality of second dielectric cores coupled to a plurality of antennas;and CA 2998536 2020-01-14 a guided wave switch configured to couple the first dielectric core to a selected one of the plurality of second dielectric cores to communicate the first guided waves from the first dielectric core to the selected one of the plurality of second dielectric cores, wherein the first guided waves propagate along the selected one of the plurality of second dielectric cores to one of the plurality of antennas.
  8. 32
    33. The communication system of claim 32, wherein the guided wave switch is further configured to communicate second guided waves from the corresponding one of the plurality of antennas to the first dielectric core;and wherein the first guided wave cable is further configured to communicate the second guided waves to a radio.
  9. 33
    34. The communication system of claim 33, wherein the at least one second guided wave cable includes one of:a single cable that includes the plurality of second dielectric cores, or a plurality of cables each including one of the plurality of second dielectric cores.
  10. 37
    38. The communication system of claim 37, wherein the guided wave switch couples the first guided waves through a gap between the end of the first dielectric core to the end of the selected one of the plurality of second dielectric cores. CA 2998536 2020-01-14
  11. 39
    40. A method comprising:communicating, via a guided wave cable having a first dielectric core, guided waves that propagate along the first dielectric core without requiring an electrical return path, wherein the guided waves are within a non-optical frequency band;and coupling, via a guided wave switch, the first dielectric core to a selected one of a plurality of second dielectric cores to communicate the guided waves from the first dielectric core to a corresponding one of a plurality of antennas via the selected one of the plurality of second dielectric cores.
  12. 40
    41. A communication system comprising:a first guided wave cable having a first dielectric core configured to propagate first guided waves without requiring an electrical return path, wherein the first guided waves are within a nonoptical frequency band;at least one second guided wave cable having a plurality of second dielectric cores coupled to a plurality of antennas;and a guided wave switch configured to couple the first dielectric core to a selected one of the plurality of second dielectric cores to communicate the first guided waves from one of the plurality of antennas to the first dielectric core via the selected one of the plurality of second dielectric cores;wherein the first guided wave cable is further configured to communicate the first guided waves to a radio.
  13. 41
    42. The communication system of claim 41, wherein the first guided wave cable is further configured to communicate second guided waves from the radio, and wherein the guided wave switch is further configured to communicate the second guided waves from the first dielectric 96 CA 2998536 2020-01-14 core to the corresponding one of the plurality of antennas via the selected one of the plurality of second dielectric cores.
  14. 46
    47. The communication system of claim 46, wherein the guided wave switch couples the first guided waves through a gap between the end of the selected one of the plurality of second dielectric cores to the end of the first dielectric core.
  15. 51
    52. A communication system comprising:a first guided wave cable having a first dielectric core configured to communicate first guided waves that are bound to the first dielectric core, wherein the first guided waves are within a non-optical frequency band and propagate along the first dielectric core without requiring an electrical return path;at least one second guided wave cable without the electrical return path having a plurality of second dielectric cores coupled to a plurality of antennas;and a guided wave switch configured to couple the first dielectric core to a selected one of the plurality of second dielectric cores to communicate the first guided waves from the selected one of the plurality of second dielectric cores to the first dielectric core, wherein the first guided waves propagate along the selected one of the plurality of second dielectric cores from one of the plurality of antennas without requiring an electrical return path.
  16. 52
    53. The communication system of claim 52, wherein the first guided wave cable is further configured to communicate second guided waves from a radio, and wherein the guided wave switch is further configured to communicate the second guided waves from the first dielectric core to the corresponding one of the plurality of antennas via the selected one of the plurality of second dielectric cores.
  17. 53
    54. The communication system of claim 53, wherein the at least one second guided wave cable includes one of:a single cable that includes the plurality of second dielectric cores, or a plurality of cables each including one of the plurality of second dielectric cores. CA 2998536 2020-01-14
  18. 57
    58. The communication system of claim 57, wherein the guided wave switch couples the first guided waves through a gap between the end of the first dielectric core to the end of the selected one of the plurality of second dielectric cores.
  19. 59
    60. A method comprising:communicating, via a guided wave cable having a first dielectric core, guided waves that propagate along the first dielectric core without requiring an electrical return path, wherein the guided waves are within a non-optical frequency band;and coupling, via a guided wave switch, the first dielectric core to a selected one of the plurality of second dielectric cores to communicate the first guided waves from the selected one of the plurality of second dielectric cores to the first dielectric core, wherein the first guided waves propagate along the selected one of the plurality of second dielectric cores from one of the plurality of antennas without requiring an electrical return path.