Claims
- 1. A cassegrain radar antenna for transmitting and receiving substantially horizontally directed radar signals, comprising:
- a horn for transmitting radar radiation from a first point,
- a subreflector having a shape corresponding to a portion of a hyperboloid surface which is defined by a hyperbola rotated around an axis, wherein said subreflector includes first and second hyperbolic focal points corresponding to the first point and a second point and wherein the axis connects the first and second hyperbolic focal points,
- a main reflector receiving the radar radiation from said subreflector and reflecting the radar radiation in a substantially horizontal direction having a shape corresponding to a portion of a paraboloid surface which is defined by a parabola rotated around a horizontal axis that substantially coincides with a vertex of the parabola wherein said main reflector has a parabolic focal point which substantially coincides with the second hyperbolic focal point of said subreflector wherein the horizontal axis substantially passes through the vertex and the second hyperbolic focal point of said subreflector, and
- said horn being connected to said main reflector via a base;
- said main reflector being coupled to said subreflector via a joint;
- said horn supporting said main reflector, said subreflector, said base and said point;
- rotating means for integrally rotating the main reflector and the subreflector around a vertical axis passing the first hyperbolic focal point,
- said rotating means further rotating the horn around the vertical axis passing the first hyperbolic focal point,
- wherein the cassegrain radar antenna also receives radar echo signals and directs the received radar echo signals to the horn via said main reflector and said subreflector.
- 2. The cassegrain radar antenna as claimed in claim 1, wherein the horn is rotatably supported with a rotary joint.
- 3. The cassegrain radar antenna as claimed in claim 1, wherein said subreflector and said main reflector are integrally press-formed from a common plate.
- 4. The cassegrain radar antenna as claimed in claim 1, wherein said subreflector and said main reflector are formed by die casting.
- 5. A cassegrain radar antenna for transmitting and receiving substantially horizontally directed radar signals, comprising:
- a horn for transmitting radar radiation from a first point;
- a subreflector having a shape corresponding to a portion of a hyperboloid surface which is defined by a hyperbola rotated around a first axis, wherein said subreflector includes first and second hyperbolic focal points corresponding to the first point and a second point and wherein the axis connects the first and second hyperbolic focal points,
- a main reflector receiving the radar radiation from said subreflector and reflecting the radar radiation in a substantially horizontal direction having a shape corresponding to a portion of a paraboloid surface which is defined by a parabola rotated around a horizontal axis that substantially coincides with a vertex of the parabola wherein said main reflector has a parabolic focal point which substantially coincides with the second hyperbolic focal point of said subreflector wherein the horizontal axis substantially passes through the vertex and the second hyperbolic focal point of said subreflector, and
- said horn being connected to said main reflector via a base;
- said main reflector being coupled to said subreflector via a joint;
- said horn supporting said main reflector, said subreflector, said base and said joint;
- inclined plates installed at the outlet of the horn having an aperture between said inclined plates that expands in the transverse cross direction with respect to the subreflector, and
- rotating means for integrally rotating said main reflector, said subreflector and said inclined plates around a vertical axis passing the first hyperbolic focal point,
- said rotating means further rotating the horn around the vertical axis passing the first hyperbolic focal point,
- wherein the cassegrain radar antenna also receives radar echo signals and directs the received radar echo signals to the horn via said main reflector and said subreflector.
- 6. A cassegrain radar antenna for transmitting and receiving substantially horizontally directed radar signals, comprising:
- a horn for transmitting radar radiation from a first point;
- a subreflector having a shape corresponding to a portion of a hyperboloid surface which is defined by a hyperbola rotated around a first axis, wherein said subreflector includes first and second hyperbolic focal points corresponding to the first point and a second point and wherein the first axis connects the first and second hyperbolic focal points,
- a main reflector receiving the radar radiation from said subreflector and reflecting the radar radiation in a substantially horizontal direction having a shape corresponding to a portion of a paraboloid surface which is defined by a parabola rotated around a horizontal axis that substantially intersects a vertex of the parabola wherein said main reflector has a parabolic focal point which substantially coincides with the second hyperbolic focal point of said subreflector wherein the horizontal axis substantially intersects the vertex and the second hyperbolic focal point of said subreflector, and
- said horn being connected to said main reflector via a base and a bracket;
- said main reflector being coupled to said subreflector via a joint;
- said horn supporting said main reflector, said subreflector, said base, said bracket, and said Joint;
- a reflection plate facing towards said subreflector and installed on a horizontal surface which is vertically displaced so as to prevent interference with said main reflector, and
- rotating means for integrally rotating said main reflector, said subreflector and said reflection plate around a vertical axis passing through the first hyperbolic focal point,
- said rotating means further rotating the horn around the vertical axis passing the first hyperbolic focal point,
- wherein the cassegrain radar antenna also receives radar echo signals and directs the received radar echo signals to the horn via said main reflector and said subreflector.
- 7. A cassegrain radar antenna for transmitting and receiving substantially horizontally directed radar signals, comprising:
- a horn for transmitting radar radiation from a first point,
- a subreflector having a shape corresponding to a portion of a hyperboloid surface which is defined by a hyperbola rotated around a first axis, wherein said subreflector includes first and second hyperbolic focal points corresponding to the first point and a second point and wherein the first axis connects the first and second hyperbolic focal points,
- a main reflector receiving the radar radiation from said subreflector and reflecting the radar radiation in a substantially horizontal direction having a shape corresponding to a portion of a paraboloid surface which is defined by a parabola rotated around a horizontal axis that substantially intersects a vertex of the parabola wherein said main reflector has a parabolic focal point which substantially coincides with the second hyperbolic focal point of said subreflector wherein the horizontal axis substantially intersects the vertex and the second hyperbolic focal point of said subreflector,
- said horn being connected to said main reflector via a base and a bracket;
- said main reflector being coupled to said subreflector via a joint;
- said horn supporting said main reflector, said subreflector, said base, said bracket, and said joint;
- a reflection plate facing towards said subreflector and installed on a horizontal surface which is vertically displaced so as to prevent interference with said main reflector,
- inclined plates installed at an outlet of said horn having an aperture between said inclined plates that expands in the transverse cross direction with respect to said subreflector and
- rotating means for integrally rotating said main reflector, said subreflector, said reflection plate and said inclined plates around a vertical axis passing through the first hyperbolic focal point,
- said rotating means further rotating the horn around the vertical axis passing the first hyperbolic focal point,
- wherein the cassegrain radar antenna also receives radar echo signals and directs the received radar echo signals to the horn via said main reflector and said subreflector.
- 8. A radar antenna for transmitting and receiving radar signals in a substantially horizontal direction comprising:
- a horn for transmitting electromagnetic radiation from a first point,
- a planar subreflector arranged so as to reflect electromagnetic radiation from said horn diagonally,
- a main reflector receiving the radar radiation from said subreflector and reflecting the radar radiation in a substantially horizontal direction having a shape corresponding to a portion of a paraboloid surface which is defined by a parabola rotated around a first axis, wherein said parabola has a focal point and a vertex, and wherein the focal point and the first point are symmetrized with respect to said planar subreflector and wherein the first axis corresponds to a horizontal line substantially passing through the focal point and the vertex, and
- said horn being connected to said main reflector via a base and a bracket;
- said main reflector being coupled to said subreflector via a joint;
- said horn supporting said main reflector, said subreflector, said base, said bracket, and said joint;
- rotating means for integrally rotating the main reflector and the subreflector around a vertical axis passing the first point,
- said rotating means further rotating the horn around the vertical axis passing the first point,
- wherein the antenna also receives radar echo signals and directs the received radar echo signals to the horn via said main reflector and said planar subreflector.
- 9. A radar antenna system for transmitting and receiving substantially horizontally directed electromagnetic radar signals comprising:
- an antenna having a horn for transmitting and receiving electromagnetic radar radiation from a first point, a subreflector arranged so as to reflect the electromagnetic radar radiation from the horn diagonally, and a main reflector arranged so as to reflect the electromagnetic radiation from the subreflector in a substantially horizontal direction,
- said horn being connected to said main reflector via a base and a bracket;
- said main reflector being coupled to said subreflector via a joint;
- said horn supporting said main reflector, said subreflector, said base, said bracket, and said joint;
- a cover having rotating means for supporting and rotating said antenna and a waveguide connected to the horn so as to direct the substantially horizontal radar radiation in an azimuth direction,
- a container having a transmitting pulse oscillator and frequency convertor respectively connected to the waveguide, said container being closed by said cover, and
- a circuit board disposed in a space between a bottom of said container and said cover, said circuit board including a modulator circuit for the transmitting pulse oscillator and an intermediate frequency conversion circuit for the frequency convertor.
- 10. The radar antenna system claimed in claim 9 wherein a shield plate fixed to said cover for separating the modulator circuit from the intermediate frequency conversion circuit mounted on said circuit board.
- 11. The radar antenna system claimed in claim 9 wherein a driving circuit for driving the rotating means and a communication circuit are mounted on said circuit board.
- 12. A cassegrain radar antenna for transmitting and receiving substantially horizontally directed electromagnetic radar signals, comprising:
- a horn for transmitting electromagnetic radar radiation from a first point in a substantially vertical direction;
- a subreflector having a shape corresponding to a portion of a hyperboloid surface which is defined by a hyperbola rotated around an axis and having a first and second focal point wherein the axis connects the first and second focal points, said subreflector arranged such that the first focal point corresponds to the first point such that said subreflector reflects the electromagnetic radar radiation from the substantially vertical direction in a substantially downward and diagonal direction;
- a main reflector having a shape corresponding to a portion of a paraboloid surface which is defined by a parabola rotated around a horizontal axis that substantially intersects a vertex of the parabola, said main reflector reflecting the substantially downwardly and diagonally directed electromagnetic radar radiation from the subreflector in a substantially horizontal direction; and
- said horn being connected to said main reflector via a base and a bracket;
- said main reflector being coupled to said subreflector via a joint;
- said horn supporting said main reflector, said subreflector, said base, said bracket, and said joint;
- rotating means for integrally rotating the main reflector and the subreflector around a vertical axis passing through the first point to rotate the substantially horizontally directed electromagnetic radar radiation,
- said rotating means further rotating the horn around the vertical axis passing the first hyperbolic focal point,
- wherein the cassegrain radar antenna also receives electromagnetic radar echo signals and directs the received electromagnetic radar echo signals to the horn via the parabolic main reflector and the hyperbolic subreflector.
- 13. The cassegrain radar antenna as claimed in claim 12 wherein the horn is rotatably supported with a rotary joint.
- 14. The cassegrain radar antenna as claimed in claim 12 wherein the subreflector and the main reflector are integrally press-formed from a common plate.
- 15. The antenna of claim 12, further comprising:
- inclined plate means for improving radiation characteristics of the cassegrain antenna, said inclined plate means arranged parallel to the horn.
- 16. The antenna of claim 12, further comprising:
- a reflection plate having a substantially planar surface facing the subreflector, said reflection plate arranged to prevent interference with the main reflector.
- 17. The cassegrain radar antenna as claimed in claim 12, wherein said subreflector and said main reflector are formed by die casting.
- 18. A cassegrain antenna for transmitting and receiving substantially horizontally directed radar signals, comprising:
- a horn for transmitting radar radiation from a first point;
- a subreflector having a shape corresponding to a portion of a hyperbola with a first and second focal point, said subreflector arranged such that the first focal point of the hyperbola corresponds to the first point of the horn such that said subreflector reflects the radar radiation from the horn as if the radar radiation originated from the second focal point of the hyperbola;
- a main reflector having a shape which corresponds to a portion of a paraboloid surface which is defined by a parabola rotated around a horizontal axis that substantially intersects a vertex of the parabola, said main reflector reflecting the radar radiation from the subreflector in a substantially horizontal direction; and
- said horn being connected to said main reflector via a base and a bracket;
- said main reflector being coupled to said subreflector via a joint;
- said horn supporting said main reflector, said subreflector, said base, said bracket, and said joint;
- rotating means for integrally rotating the main reflector and the subreflector around a vertical axis passing through the first point,
- said rotating means further rotating the horn around the vertical axis passing the first hyperbolic focal point,
- wherein the cassegrain antenna also receives radar echo signals and directs the received radar echo signals to the horn via the main reflector and the hyperbolic subreflector.
- 19. The cassegrain antenna of claim 18, further comprising:
- inclined plate means for improving radiation characteristics of the cassegrain antenna, said inclined plate means arranged parallel to the horn.
- 20. The cassegrain antenna of claim 18, further comprising:
- a reflection plate having a substantially planar surface facing the subreflector, said reflection plate arranged to prevent interference with the main reflector.
- 21. The cassegrain antenna of claim 18, wherein the horn transmits and receives electromagnetic radiation in an upward direction.
- 22. The cassegrain antenna of claim 18, wherein the horn transmits and receives electromagnetic radiation in a downward direction.
- 23. An antenna for transmitting and receiving radar signals in a substantially horizontal direction comprising:
- a horn for transmitting radar radiation from a first point in a substantially vertical direction;
- a subreflector having a planar shape arranged to reflect radar radiation from the horn in a diagonal direction;
- a main reflector having a shape which corresponds to a portion of a paraboloid surface which is defined by a parabola rotated around a horizontal axis that substantially intersects a vertex of the parabola, said main reflector reflecting the diagonally directed radar radiation from the subreflector in a substantially horizontal direction; and
- said horn being connected to said main reflector via a base;
- said main reflector being coupled to said subreflector via a joint;
- said horn supporting said main reflector, said subreflector, said base and said joint;
- rotating means for integrally rotating the main reflector and the subreflector around a vertical axis passing through the first point to rotate the substantially horizontally directed radar radiation,
- wherein the antenna also receives radar echo signals and directs the received radar echo signals to the horn via the parabolic main reflector and the subreflector.
- 24. A method of manufacturing a compact antenna system, comprising the steps of:
- integrally press forming a main reflector, a subreflector and a joint portion that connects the main reflector and the subreflector from a single plate to form an antenna;
- said horn being connected to said main reflector via a base and a bracket;
- said main reflector being coupled to said subreflector via a joint;
- said horn supporting said main reflector, said subreflector, said base, said bracket, and said joint;
- providing a container for housing a circuit board wherein the circuit board includes a modulator circuit for transmitting desired electromagnetic radiation and an intermediate frequency conversion circuit for amplifying received electromagnetic echo signals;
- fixing a cover to the container; and
- mounting the antenna to the cover with a rotary joint.
- 25. The method of claim 24 further comprising the step of mounting a shield plate to the circuit board for separating the modulator circuit from the intermediate frequency conversion circuit.
- 26. The method of claim 24 further comprising the steps of:
- mounting a horn to the antenna, and
- rotating the antenna using the rotary joint.
- 27. The method of claim 24, further comprising the step of:
- constructing the cover with a die cast process.
- 28. The method of claim 24, further comprising the step of:
- constructing the container with a die cast process.
- 29. A cassegrain radar antenna for transmitting search signals and receiving echo signals in a substantial horizontal direction, comprising:
- a horn for transmitting radar radiation from a first point,
- a subreflector having a shape corresponding to a portion of a hyperboloid surface which is defined by a hyperbola rotated around an axis, wherein said subreflector includes first and second hyperbolic focal points corresponding to the first point and a second point, respectively, and wherein the axis connects the first and second hyperbolic focal points,
- a main reflector receiving radar radiation from said subreflector and reflecting the radar radiation in the substantially horizontal direction having a shape corresponding to a portion of a paraboloid surface which is defined by a parabola rotated around a horizontal axis that substantially coincides with a vertex of the parabola wherein said main reflector has a parabolic focal point which substantially coincides with the second hyperbolic focal point of said subreflector;
- said horn being connected to said main reflector via a base and a bracket;
- said main reflector being coupled to said subreflector via a joint;
- said horn supporting said main reflector, said subreflector, said base, said bracket, and said joint;
- wherein the horizontal axis substantially passes through the vertex and the second hyperbolic focal point of said subreflector,
- wherein said subreflector and said main reflector are integrally press-formed from a common plate, and
- rotating means for integrally rotating said main reflector, said subreflector around a vertical axis passing through the first hyperbolic focal point;
- said rotating means further rotating the horn around the vertical axis passing the first hyperbolic focal point,
- wherein said cassegrain radar antenna also receives radar echo signals and directs the received radar echo signals to said horn via said main reflector and said subreflector.
Priority Claims (1)
Number |
Date |
Country |
Kind |
5-047260 |
Feb 1993 |
JPX |
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Parent Case Info
This application is a continuation, of application Ser. No. 08/724,238, filed on Sep. 30, 1996, which is a continuation of Ser. No. 08/318,664 filed as PCT/JP94/00198, Feb. 10, 994, now abandoned.
US Referenced Citations (5)
Foreign Referenced Citations (2)
Number |
Date |
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2-87807 |
Mar 1990 |
JPX |
2-238702 |
Sep 1990 |
JPX |
Continuations (2)
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Number |
Date |
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Parent |
724238 |
Sep 1996 |
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Parent |
318664 |
Dec 1994 |
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