Dielectric leaky-wave antenna

Communications: radio wave antennas – Antennas – Wave guide type

Reexamination Certificate

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C343S770000, C343S776000, C333S238000

Reexamination Certificate

active

06489930

ABSTRACT:

CROSS-REFERENCE TO RELATED APPLICATIONS
This application is based upon and claims the benefit of priority from the prior Japanese Patent Applications No. 2000-054487, filed Feb. 29, 2000; and No. 2000-224271, filed Jul. 25, 2000, the entire contents of which are incorporated herein by reference.
BACKGROUND OF THE INVENTION
The present invention relates to a dielectric leaky-wave antenna and, more particularly, to a dielectric leaky-wave antenna for leaking electromagnetic waves from an electromagnetic wave transmission guide formed by a ground plane and dielectric, in which the structure is simplified and a technique of increasing the efficiency is adopted.
BRIEF SUMMARY OF THE INVENTION
In recent years, demands have arisen for an antenna which can be used in the milliwave band for a radio LAN, a radar mounted on an automobile, or the like.
As the milliwave-band antenna, various antennas are proposed, including an antenna which leaks electro-magnetic waves from a slot formed in a waveguide, and a so-called triplate antenna in which a coupling slot is formed in a slab and power is fed via a triplate line.
Of these antennas, the antenna using a waveguide is difficult to manufacture because of a three-dimensional structure partitioned by a metallic wall.
The triplate antenna has a large line loss though the line loss is smaller than that of a microstrip line. Further, unwanted waves generated by reflection of an element are transmitted through the triplate line, so the antenna efficiency is low.
To solve these problems, a parallel-plate slot array antenna is proposed in which a transmission guide equivalent to a waveguide is formed by upper and lower metallic surfaces of a printed board and through holes extending through the metallic surfaces (TECHNICAL REPORT OF IEICE.A. PP. 99-114, RCS99-111 (1999-10)).
However, the parallel-plate antenna in which a transmission guide equivalent to a waveguide is formed using through holes in a printed board is more complicated in structure than a dielectric leaky-wave antenna, and requires a high manufacturing cost for forming through holes.
Further, this antenna uses a uniform electromagnetic field, i.e., TEM mode in a section perpendicular to the propagation direction. Thus, strong currents equal in magnitude flow through upper and lower metallic plates to generate a conductor loss, which increases the loss.
A dielectric plate is actually inserted between parallel plates in order to shorten the waveguide wavelength and suppress the grating lobe, too. This also generates a dielectric loss to limit a decrease in loss.
As another type of antenna, a leaky-wave antenna is proposed in which a narrow radiation dielectric bar is arranged as a transmission line on a two-layered dielectric slab, the height of part of the dielectric bar is changed, and metallic strips are periodically laid out at a small-height portion (U.S. Pat. No. 4,835,543, “Dielectric slab antennas”). This antenna is a one-dimensional array antenna. To obtain a two-dimensional plane antenna important in practical use, a plurality of radiation dielectric bars must be aligned, which results in low mass productivity. In addition, a feed system for feeding power to these dielectric bars in phase is complicated.
Furthermore, an invention has been applied in which a dielectric slab having projections on a plate in the vertical direction is prepared, and the surface of the slab is metallized to form a continuous transverse stub, and the stub is used for an antenna (U.S. Pat. No. 5,266,961, “Continuous transverse stub element devices and methods of making same”). This antenna is a slot array antenna uniform in the transverse direction using a parallel-plate waveguide to which a dielectric is inserted. In general, a dielectric material such as alumina having a high frequency such as a milliwave and a low loss is difficult to process. The manufacture of a complicated dielectric slab having many projections is disadvantageous in cost.
For this reason, implementation of an antenna having a high antenna efficiency and simple structure is demanded.
It is an object of the present invention to provide a dielectric leaky-wave antenna for leaking electromagnetic waves from an electromagnetic wave transmission guide formed by a ground plane and dielectric, in which the structure is simplified and a technique of increasing the antenna efficiency is adopted to meet this demand.
To achieve the above object, according to the present invention, (1) there is provided a dielectric leaky-wave antenna comprising:
a ground plane;
a dielectric slab arranged on one surface of the ground plane to form a transmission guide for transmitting an electromagnetic wave along a surface from one end to the other end between the dielectric slab and the ground plane;
a perturbation loaded on the dielectric slab to leak the electromagnetic wave from the surface of the dielectric slab;
a feed for supplying the electromagnetic wave to one end of the transmission guide formed by the ground plane and the dielectric slab; and
a dielectric layer which is interposed between the ground plane and the dielectric slab and has a lower permittivity than a permittivity of the dielectric slab.
According to the present invention, (2) there is provided a dielectric leaky-wave antenna defined in (1), characterized in that the dielectric layer includes a gas layer including air or a vacuum layer.
According to the present invention, (3) there is provided a dielectric leaky-wave antenna defined in (1), characterized in that the perturbation is formed from a metallic strip or slot perpendicular to an electromagnetic wave transmission direction of the transmission guide.
According to the present invention, (4) there is provided a dielectric leaky-wave antenna defined in (1), characterized in that the perturbation is formed from a metallic strip or slot having an angle of 45° with respect to an electromagnetic wave transmission direction of the transmission guide.
According to the present invention, (5) there is provided a dielectric leaky-wave antenna defined in (1), characterized in that the perturbation is formed from a pair of metallic strips or pair of slots which form an angle of 90° with each other, and is loaded on the dielectric slab so as to form an angle of 45° with respect to an electromagnetic wave transmission direction of the transmission guide by each metallic strip of the pair of metallic strips or each slot of the pair of slots.
According to the present invention, (6) there is provided a dielectric leaky-wave antenna defined in (1), characterized in that a pair of perturbations parallel-arranged at an interval almost ¼ a wavelength of the electromagnetic wave in the transmission guide in the electromagnetic wave transmission direction of the transmission guide are loaded at a predetermined interval in the electromagnetic wave transmission direction of the transmission guide.
According to the present invention, (7) there is provided a dielectric leaky-wave antenna defined in (6), characterized in that one of the pair of perturbations is formed on one surface of the dielectric slab, and the other is formed on an opposite surface of the dielectric slab.
According to the present invention, (8) there is provided a dielectric leaky-wave antenna defined in (6), characterized in that the pair of perturbations are formed on an upper surface of the dielectric slab.
According to the present invention, (9) there is provided a dielectric leaky-wave antenna defined in (1), characterized in that
the feed is formed to radiate a cylindrical wave, and
a wave-front conversion section for converting the cylindrical wave radiated by the feed into a plane wave and guiding the plane wave to the transmission guide is arranged at one end of the dielectric slab.
According to the present invention, (10) there is provided a dielectric leaky-wave antenna defined in (1), characterized in that the wave-front conversion section is formed by extending the dielectric slab toward the feed.
According to the present invention, (11) there is provided a diele

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