Electronically scanned antenna for collision avoidance radar
First Claim
Patent Images
1. A millimeter wave antenna which may be electronically scanned, comprising:
- a linear ferrite loaded slot array; and
a feed-through dielectric lens illuminated by said slot array, said lens comprising means for focusing the beam generated by said slot array, said lens being doubly curved in both the horizontal and vertical directions, the vertical cross-section thereof being thickest in the middle to transform a divergent beam into a collimated beam with a uniform wavefront, the cross section of the lens in the horizontal direction being convex on the outside but concave on the inside surface, and being thickest at the center of the lens.
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Abstract
A millimeter wave antenna capable of electronic scanning for automobile collision avoidance radar. The antenna includes a linear ferrite loaded slot array which illuminates a dielectric lens. The antenna system has no moving parts. Beam scanning is achieved by controlling the bias magnetic field along the ferrite rod of the slot array.
22 Citations
11 Claims
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1. A millimeter wave antenna which may be electronically scanned, comprising:
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a linear ferrite loaded slot array; and a feed-through dielectric lens illuminated by said slot array, said lens comprising means for focusing the beam generated by said slot array, said lens being doubly curved in both the horizontal and vertical directions, the vertical cross-section thereof being thickest in the middle to transform a divergent beam into a collimated beam with a uniform wavefront, the cross section of the lens in the horizontal direction being convex on the outside but concave on the inside surface, and being thickest at the center of the lens. - View Dependent Claims (2, 3, 4)
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5. An electrically scanned millimeter wave antenna system, comprising:
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first and second linear ferrite loaded slot arrays, said first array for transmit operation, said second array for receive operation; a feed-through dielectric lens illuminated by said slot arrays, said lens comprising means for focussing the beam generated by said first slot array and for focussing received energy on said second slot array, said lens being curved in both the horizontal and vertical directions, the vertical cross-section thereof being thickest in the middle to transform a divergent beam into a collimated beam with a uniform wavefront, the cross-section of the lens in the horizontal direction being convex on the outside but concave on the inside surface, and being thickest at the center of the lens; and wherein said first and second slot arrays are located at least near the focal point of said lens, and further comprising means for varying the magnetic flux through said ferrite load of said first slot array, wherein the illumination of said first slot array is electronically scannable in the azimuthal direction, and means for varying the magnetic flux through said ferrite load of said second slot array, wherein the receive beam of said second slot array is electronically scannable in the azimuthal direction. - View Dependent Claims (6, 7, 8, 9, 10, 11)
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Specification