Micro lens array antenna and radar device and vehicle having micro lens array antenna
A micro lens array that includes a planar array antenna including a plurality of planar antennas formed on a substrate, a plurality of dielectric lenses each provided above each of the plurality of planar antennas, and a plurality of dielectric plates each provided on part of the substrate, the part being provided between two adjacent dielectric lenses of the plurality of dielectric lenses.
1 . A micro lens array antenna comprising:
a planar array antenna including a plurality of planar antennas formed on a substrate;
a plurality of dielectric lenses each provided above each of the plurality of planar antennas; and
a plurality of dielectric plates each provided on part of the substrate, the part being provided between two adjacent dielectric lenses of the plurality of dielectric lenses,
wherein each of the plurality of dielectric plates has a thickness and a dielectric constant at which a phase of a second reflected radio wave shifts from a phase of a first reflected radio wave by a predetermined phase, the first reflected radio wave being a radio wave that is emitted from each of the plurality of planar antennas and reflected by a first side surface of the dielectric plate facing the planar antenna of the plurality of planar antennas, the second reflected radio wave being a radio wave that passes through the first side surface, propagates through the dielectric plate, is reflected by a second side surface of the dielectric plate opposite to the first side surface, and appears in a space on a side of the first side surface of the dielectric plate.
2 . The micro lens array antenna according to claim 1 , wherein a plurality of planar array antennas are arranged in a plurality of rows that are adjacent to each other on the substrate, the planar array antenna being one of the plurality of planar array antennas, each of the plurality of dielectric lenses is formed in an elliptical shape having a major axis that is orthogonal to a direction in which the rows of the plurality of planar array antennas are arranged in plan view of a surface of the substrate, and each of the plurality of planar antennas are formed at a predetermined distance from a focal point of each of the plurality of dielectric lens on the substrate around the focal point in a direction of the major axis.
3 . The micro lens array antenna according to claim 2 , wherein each of the plurality of dielectric plates is provided between the adjacent planar antennas in each of the rows.
4 . The micro lens array antenna according to claim 1 , wherein the plurality of dielectric lenses are formed integrally with the plurality of dielectric plates and fixed onto the substrate.
5 . The micro lens array antenna according to claim 1 , wherein a dielectric constant of the plurality of dielectric plates is greater than a dielectric constant of the plurality of dielectric lenses.
6 . The micro lens array antenna according to claim 1 , wherein the plurality of dielectric plates have a dielectric constant causing a predetermined dielectric loss for converting a portion of electrical energy of a radio wave emitted from each of the plurality of planar antennas into thermal energy.
7 . A radar device comprising:
a micro lens array antenna, wherein
the micro lens array antenna includes
a planar array antenna including a plurality of planar antennas formed on a substrate,
a plurality of dielectric lenses each provided above each of the plurality of planar antennas, and
a plurality of dielectric plates each provided on part of the substrate, the part being provided between two adjacent dielectric lenses of the plurality of dielectric lenses,
wherein each of the plurality of dielectric plates has a thickness and a dielectric constant at which a phase of a second reflected radio wave shifts from a phase of a first reflected radio wave by a predetermined phase, the first reflected radio wave being a radio wave that is emitted from each of the plurality of planar antennas and reflected by a first side surface of the dielectric plate facing the planar antenna of the plurality of planar antennas, the second reflected radio wave being a radio wave that passes through the first side surface, propagates through the dielectric plate, is reflected by a second side surface of the dielectric plate opposite to the first side surface, and appears in a space on a side of the first side surface of the dielectric plate.
8 . The radar device according to claim 7 , wherein a plurality of planar array antennas are arranged in a plurality of rows that are adjacent to each other on the substrate, the planar array antenna being one of the plurality of planar array antennas, each of the plurality of dielectric lenses is formed in an elliptical shape having a major axis that is orthogonal to a direction in which the rows of the plurality of planar array antennas are arranged in plan view of a surface of the substrate, and each of the plurality of planar antennas are formed at a predetermined distance from a focal point of each of the plurality of dielectric lens on the substrate around the focal point in a direction of the major axis.
9 . The radar device according to claim 8 , wherein each of the plurality of dielectric plates is provided between the adjacent planar antennas in each of the rows.
10 . The radar device according to claim 7 , wherein the plurality of dielectric lenses are formed integrally with the plurality of dielectric plates and fixed onto the substrate.
11 . A vehicle comprising:
a radar device that includes a micro lens array antenna, wherein
the micro lens array antenna includes
a planar array antenna including a plurality of planar antennas formed on a substrate,
a plurality of dielectric lenses each provided above each of the plurality of planar antennas, and
a plurality of dielectric plates each provided on part of the substrate, the part being provided between two adjacent dielectric lenses of the plurality of dielectric lenses,
wherein each of the plurality of dielectric plates has a thickness and a dielectric constant at which a phase of a second reflected radio wave shifts from a phase of a first reflected radio wave by a predetermined phase, the first reflected radio wave being a radio wave that is emitted from each of the plurality of planar antennas and reflected by a first side surface of the dielectric plate facing the planar antenna of the plurality of planar antennas, the second reflected radio wave being a radio wave that passes through the first side surface, propagates through the dielectric plate, is reflected by a second side surface of the dielectric plate opposite to the first side surface, and appears in a space on a side of the first side surface of the dielectric plate.
12 . The vehicle according to claim 11 , wherein a plurality of planar array antennas are arranged in a plurality of rows that are adjacent to each other on the substrate, the planar array antenna being one of the plurality of planar array antennas, each of the plurality of dielectric lenses is formed in an elliptical shape having a major axis that is orthogonal to a direction in which the rows of the plurality of planar array antennas are arranged in plan view of a surface of the substrate, and each of the plurality of planar antennas are formed at a predetermined distance from a focal point of each of the plurality of dielectric lens on the substrate around the focal point in a direction of the major axis.
13 . The vehicle according to claim 12 , wherein each of the plurality of dielectric plates is provided between the adjacent planar antennas in each of the rows.
14 . The vehicle according to claim 11 , wherein the plurality of dielectric lenses are formed integrally with the plurality of dielectric plates and fixed onto the substrate.