Apparatus and a method relating to antenna systems
First Claim
1. Microwave antenna system (100) comprising:
- a substantially planar electrically conductive ground plane (102),an aperture (103) in the ground plane (102),a substantially planar signal feed structure (104) being parallel to the ground plane (102),a substantially planar first dielectric layer (123) located between the ground plane (102) and the feed structure (104), said microwave antenna system (100) whereinthe aperture (103) is in a shape of a first slot (105) aligned along a first direction (X) and a second slot (106) aligned along a second direction (Y) orthogonal to the first direction (X), said slots (105,106) intersecting each other at a slot intersection point (SIP),the feed structure comprises a first feed unit (201), at least partly elongated parallel with the first direction (X), intersecting the second slot (206) in a first intersection point (IP1), at which point (IP1) the first feed unit (201) is parallel with the first direction (X),the feed structure comprises a fork shaped second feed unit (202) symmetric with respect to the second direction (Y), comprising a first arm (203) and a second arm (204) extending from a second feed joining unit (207), the arms (203,204) each being at least partly elongated parallel with the second direction (Y),said first arm (203) intersecting the first slot (205) at a second intersection point (IP2) and said second arm (204) intersecting the first slot (205) at a third intersection point (IP3), said second and third intersection points (IP2,IP3) being on opposite sides of the slot intersection point (SIP1), at which second and third intersecting points (IP2,IP3) the first arm (203), and the second arm (204) each are parallel with the second direction (Y).
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Abstract
An antenna system (100) comprises a substantially planar electrically conductive ground plane (102) with an aperture (103), a substantially planar signal feed structure (104) parallel to the ground plane (102) and a substantially planar first dielectric layer (123) between the ground plane and the feed structure (104). The aperture (103) is in a shape of a first slot (105) orthogonally intersecting a second slot (106) at an intersection point (SIP). The feed structure (104) comprises a first feed unit (107) intersecting the second slot (106) asymmetrically with respect to the first slot (105), and a fork shaped second feed unit (108) comprising two feed arms (110,111). The feed arms (110,111) intersect the first slot (105) on either side of the slot intersection point (SIP), symmetrically with respect to the second slot (106). When used as a transmitting antenna, a first signal (Si) is fed through the first feed unit (107) and a second signal (S2) is fed through the second feed unit (108) to respective associated slot (105,106). The signals (S1,S2) excite the aperture (103) to radiate two substantially orthogonal linearly polarized signals.
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Citations
16 Claims
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1. Microwave antenna system (100) comprising:
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a substantially planar electrically conductive ground plane (102), an aperture (103) in the ground plane (102), a substantially planar signal feed structure (104) being parallel to the ground plane (102), a substantially planar first dielectric layer (123) located between the ground plane (102) and the feed structure (104), said microwave antenna system (100) wherein the aperture (103) is in a shape of a first slot (105) aligned along a first direction (X) and a second slot (106) aligned along a second direction (Y) orthogonal to the first direction (X), said slots (105,106) intersecting each other at a slot intersection point (SIP), the feed structure comprises a first feed unit (201), at least partly elongated parallel with the first direction (X), intersecting the second slot (206) in a first intersection point (IP1), at which point (IP1) the first feed unit (201) is parallel with the first direction (X), the feed structure comprises a fork shaped second feed unit (202) symmetric with respect to the second direction (Y), comprising a first arm (203) and a second arm (204) extending from a second feed joining unit (207), the arms (203,204) each being at least partly elongated parallel with the second direction (Y), said first arm (203) intersecting the first slot (205) at a second intersection point (IP2) and said second arm (204) intersecting the first slot (205) at a third intersection point (IP3), said second and third intersection points (IP2,IP3) being on opposite sides of the slot intersection point (SIP1), at which second and third intersecting points (IP2,IP3) the first arm (203), and the second arm (204) each are parallel with the second direction (Y). - View Dependent Claims (2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 14)
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13. Microwave antenna system (100) according to claim wherein the feed structure comprises stripline units.
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15. A method of feeding a first and a second current representing a first and a second signal (S1,S2) to an aperture of a first slot and a second slot orthogonally intersecting each other, producing a dual linearly polarized electromagnetic field in a microwave antenna system, including the following steps:
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asymmetrically feeding said first current to the second slot in such a manner that the second slot is excited and generates an electromagnetic field having a first linear polarization, and symmetrically feeding said second current to the first slot by splitting it up in a first and a second path and in such a manner that the the first slot is excited and produces an electromagnetic field having a second linear polarization orthogonal to the first linearly polarized field. - View Dependent Claims (16)
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Specification