CA2964085C

Guided-wave transmission device with non-fundamental mode propagation and methods for use therewith

Abstract

Aspects of the subject disclosure may include, for example, a transmission device that includes a transmitter that generates a first electromagnetic wave to convey data. A coupler couples the first electromagnetic wave to a single wire transmission medium having an outer surface, to forming a second electromagnetic wave that is guided to propagate along the outer surface of the single wire transmission medium via at least one guided wave mode that includes an asymmetric or non-fundamental mode having a lower cutoff frequency. A carrier frequency of the second electromagnetic wave is selected to be within a limited range of the lower cutoff frequency, so that a majority of the electric field is concentrated within a distance from the outer surface that is less than half the largest cross sectional dimension of the single wire transmission medium, and/or to reduce propagation loss. Other embodiments are disclosed.

CA2964085C, drawing sheet 1
Sheet 1 of 20

Term

9 yearsleft in the term

Expires 21 September 2035.

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

89 claims: 13 independent, 76 dependent

  1. 1
    A transmission device comprising:a communications interface that receives a communication signal that includes first data;a transceiver, coupled to the communications interface, that generates a first electromagnetic wave based on the communication signal to convey the first data;and a coupler, coupled to the transceiver, that couples the first electromagnetic wave to a transmission medium having at least one inner portion surrounded by a dielectric material, the dielectric material having an outer surface and a corresponding circumference, wherein the coupling of the first electromagnetic wave to the transmission medium forms a second electromagnetic wave having at least one carrier frequency that is guided to propagate along the outer surface of the dielectric material via at least one guided wave mode that includes a non-fundamental mode, wherein the non-fundamental mode has a lower cutoff frequency, and wherein the at least one carrier frequency is selected based on the lower cutoff frequency;wherein the dielectric material includes an insulating jacket and wherein the outer surface of the dielectric material corresponds to an outer surface of the insulating jacket.
  2. 9
    A method comprising:receiving, via a communications interface, a communication signal that includes first data;generating, via a transceiver, a first electromagnetic wave based on the communication signal to convey the first data;and CA 02964089 2017-04-07 coupling, via a coupler, the first electromagnetic wave to a transmission medium having at least one inner portion surrounded by a dielectric material, the dielectric material having an outer surface and a corresponding circumference, wherein the coupling of the first electromagnetic wave to the transmission medium forms a second electromagnetic wave having at least one carrier frequency that is guided to propagate along the outer surface of the dielectric material via at least one guided wave mode that includes a nonfundamental mode, wherein the non-fundamental mode has a lower cutoff frequency, wherein the at least one carrier frequency is selected based on the lower cutoff frequency, and wherein the dielectric material includes an insulating jacket and wherein the outer surface of the dielectric material corresponds to an outer surface of the insulating jacket.
  3. 16
    A transmission device comprising:a transmitter that generates a first electromagnetic wave based on a communication signal to convey first data;and a coupler, coupled to the transmitter, that couples the first electromagnetic wave to a single wire transmission medium having an outer surface, wherein the coupling of the first electromagnetic wave to the single wire transmission medium forms a second electromagnetic wave having at least one carrier frequency that is guided to propagate along the outer surface of the single wire transmission medium via at least one guided wave mode that includes an asymmetric mode having a majority of electric field concentrated within a distance from the outer surface that is less than half of a largest cross sectional dimension of the single wire transmission medium.
  4. 23
    A method comprising:generating a first electromagnetic wave based on a communication signal to convey first data;and coupling, by a coupler, the first electromagnetic wave to a single wire transmission medium having an outer surface, wherein the coupling of the first electromagnetic wave to the single wire transmission medium forms a second electromagnetic wave that is guided to propagate along the outer surface of the single wire transmission medium via at least one guided wave mode that includes an asymmetric mode wherein at least one carrier frequency of the asymmetric mode is selected to reduce propagation loss. CA 02964086 2017-04-07
  5. 30
    An antenna system comprising:an antenna;a transmission medium that facilitates wireless network connectivity via the antenna, wherein the transmission medium comprises a dielectric material having a largest cross sectional dimension;a communications interface that receives a first communication signal that includes first data;a transceiver, coupled to the communications interface, that generates a first electromagnetic wave based on the first communication signal to convey the first data, the first electromagnetic wave having at least one carrier frequency;and a coupler, coupled to the transceiver, that couples the first electromagnetic wave to the transmission medium, wherein the coupling of the first electromagnetic wave to the transmission medium forms a second electromagnetic wave that is guided to propagate along the dielectric material via at least one guided-wave mode that includes a nonfundamental mode, wherein the non-fundamental mode has a cutoff frequency, and wherein the at least one carrier frequency is above the cutoff frequency and a majority of an electric field strength of the second electromagnetic wave is concentrated within a distance from the dielectric material that is less than half the largest cross sectional dimension.
  6. 37
    A transmission device comprising:a transmitter that generates a first electromagnetic wave based on a communication signal to convey data, the first electromagnetic wave having at least one carrier frequency;and a coupler, coupled to the transmitter, that couples the first electromagnetic wave to a conductorless transmission medium that facilitates wireless network connectivity via an antenna, wherein the conductorless transmission medium comprises a dielectric material having a diameter, wherein the coupling of the first electromagnetic wave to the conductorless transmission medium forms a second electromagnetic wave that is guided to propagate along the conductorless transmission medium via at least one guided-wave mode that includes an asymmetric mode, wherein the at least one carrier frequency is within a microwave frequency band and wherein the asymmetric mode has a cutoff frequency, and wherein the al least one carrier frequency is above the cutoff frequency and a majority of an electric field strength of the second electromagnetic wave is concentrated within a distance from the dielectric material that is less than half the diameter.
  7. 44
    A method comprising:generating a first electromagnetic wave based on a communication signal to convey data, the first electromagnetic wave having at least one carrier frequency;and coupling, by a coupler, the first electromagnetic wave to a dielectric transmission medium that provides network connectivity via an antenna that radiates free space wireless signals, wherein the dielectric transmission medium has a diameter, wherein the coupling of the first electromagnetic wave to the dielectric transmission medium forms a second electromagnetic wave that is guided to propagate along the dielectric transmission medium via a non-fundamental guided-wave mode, wherein the at least one carrier frequency is within a millimeter-wave frequency band and wherein the at least one carrier frequency is CA 02964089 2017-04-07 above a cutoff frequency of the non-fundamental guided-wave mode and a majority of an electric field strength of the second electromagnetic wave is concentrated within a distance from the dielectric transmission medium that is less than half the diameter.
  8. 50
    An antenna system comprising:an antenna;a transmission medium that facilitates wireless network connectivity via the antenna, wherein the transmission medium comprises a dielectric material having a largest cross sectional dimension;CA 02964085 2017-04-07 a coupler that couples a first electromagnetic wave having a carrier frequency to the transmission medium, wherein the coupling of the first electromagnetic wave to the transmission medium results in a second electromagnetic wave that is guided to propagate along the dielectric material via at least one guided-wave mode that includes a nonfundamental mode, wherein the non-fundamental mode has a cutoff frequency, and wherein the carrier frequency is above the cutoff frequency and a majority of an electric field strength of the second electromagnetic wave is concentrated within a distance from the dielectric material that is less than the largest cross sectional dimension.
  9. 57
    A transmission device comprising:means for generating a first electromagnetic wave based on a communication signal to convey data, the first electromagnetic wave having a carrier frequency;and means for coupling the first electromagnetic wave to a conductorless transmission medium that facilitates wireless network connectivity via an antenna, wherein the conductorless transmission medium comprises a dielectric material having a diameter, wherein the coupling of the first electromagnetic wave to the conductorless transmission medium results in a second electromagnetic wave that is guided to propagate along the conductorless transmission medium via at least one guided-wave mode that includes an asymmetric mode, wherein the carrier frequency is within a non-optical frequency band and wherein the asymmetric mode has a cutoff frequency, and wherein the carrier frequency is above the cutoff frequency and a majority of an electric field strength of the second electromagnetic wave is concentrated within a distance from the dielectric material that is less than the diameter.
  10. 64
    A method comprising:generating a first electromagnetic wave based on a communication signal to convey data, the first electromagnetic wave having a carrier frequency;and coupling, by a coupler, the first electromagnetic wave to a dielectric transmission medium that provides network connectivity via an antenna that radiates free space wireless signals, wherein the dielectric transmission medium has a diameter, wherein the coupling of the first electromagnetic wave to the dielectric transmission medium results in a second electromagnetic wave that is guided to propagate along the dielectric transmission medium via a non-fundamental guided-wave mode, wherein the carrier frequency is within a nonoptical frequency band and wherein the carrier frequency is above a cutoff frequency of the non-fundamental guided-wave mode and a majority of an electric field strength of the second electromagnetic wave is concentrated within a distance from the dielectric transmission medium that is less than the diameter.
  11. 70
    A transmission device comprising:a communications interface that receives a communication signal that includes first data;a transceiver, coupled to the communications interface, that generates a first electromagnetic wave based on the communication signal to convey the first data;and a coupler, coupled to the transceiver, that couples the first electromagnetic wave to a transmission medium having at least one inner portion surrounded by an insulating jacket composed of a dielectric material, the insulating jacket having an outer surface, wherein the coupling of the first electromagnetic wave to the transmission medium forms a second electromagnetic wave having at least one carrier frequency that is guided to propagate along the outer surface of the insulating jacket via at least one guided wave mode that includes a non-fundamental mode, wherein the non-fundamental mode has a cutoff frequency, and wherein the at least one carrier frequency is selected based on the cutoff frequency. CA 02964089 2017-04-07
  12. 77
    A method comprising:generating a first electromagnetic wave based on a communication signal to convey first data: and coupling, by a coupler, the first electromagnetic wave to a transmission medium having at least one inner portion surrounded by an insulating jacket composed of a dielectric material, the insulating jacket having an outer surface, wherein the coupling of the first electromagnetic wave to the transmission medium forms a second electromagnetic wave having at least one carrier frequency that is guided to propagate along the outer surface of the insulating jacket via at least one guided wave mode that includes a nonfundamental mode, wherein the second electromagnetic wave has a first portion of signal energy that propagates inside of the insulating jacket and a second portion of signal energy that propagates outside of the insulating jacket, and where the second portion is greater than the first portion.
  13. 83
    A transmission device comprising:means for generating a first electromagnetic wave based on a communication signal to convey first data;and means for coupling the first electromagnetic wave to a transmission medium having at least one inner portion surrounded by an insulating jacket composed of a dielectric material, the insulating jacket having an outer surface, wherein the coupling of the first electromagnetic wave to the transmission medium forms a second electromagnetic wave having at least one earner frequency that is guided to propagate along the outer surface of the insulating jacket via at least one guided wave mode that includes a non-fundamental mode, wherein the second electromagnetic wave has a first portion of signal energy that propagates inside of the insulating jacket and a second portion of signal energy that propagates outside of the insulating jacket, and where the second portion is greater than the first portion.