This is a Continuation of PCT/JP2009/002310 filed May 26, 2009 and published in Japanese, which has a priority of Japanese no. 2008-139617 filed May 28, 2008, hereby incorporated by reference.
1. Field of the Invention
The present invention relates to a small-sized antenna used in a weak electric field area of a base station antenna for mobile communication and more particularly, it relates to a capacity loaded planar antenna with short stubs which can achieve a wider bandwidth without changing a size of a base plate.
2. Description of the Related Art
In an indoor transponder for mobile communication installed on a ceiling or the like to be used, an omnidirectional, low-posture and small-sized wideband antenna is used.
In a capacity loaded monopole antenna obtained by lowering the posture of an omnidirectional monopole antenna, a plurality of posts can be arranged to match with a power supply line.
[Constitution of Conventional Capacity Loaded Planar Antenna:
A constitution of a conventional capacity loaded planar antenna will be described with reference to
As shown in
The antenna element 10 has a disc-like shape smaller than the base plate 20, and is installed in parallel with the base plate 20.
The base plate 20 includes the antenna element 10 fixed thereto via the support plate 30, and further the antenna element 10 is connected to the base plate 20 by the plurality of posts 40.
[Conventional VSWR:
A voltage standing wave ratio (VSWR) in the constitution of the conventional capacity loaded planar antenna is shown in
The VSWR is a ratio between crests and bottoms of a voltage amplitude distribution occurring along a transmission path where a reflected wave is generated owing to impedance mismatch.
As to the VSWR characteristics in the conventional constitution, as shown in
Moreover, when a length ss of the posts 40 is ss=14 mm, the bandwidth of VSWR<1.5 is 2.6%, which turns out to be a narrow band.
[Conventional Vertical Plane Radiation Directivity:
A vertical plane radiation directivity in the conventional constitution is shown in
[Conventional Horizontal Plane Radiation Directivity:
A horizontal plane radiation directivity in the conventional constitution is shown in
Examples of a prior art concerning a low posture type capacity loaded dielectric monopole antenna include Japanese Patent Application Laid-Open No. 2003-229714 (Patent Document 1).
Patent Document 1 discloses a planar antenna where a structure which connects a capacitive electrode to a ground electrode and which abuts on a power supply pin can be simplified to facilitate processing and handling.
[Patent Document 1] Japanese Patent Application Laid-Open No. 2003-229714
However, in the above conventional wideband antenna, to decrease an installation area of the antenna, a base plate needs to be small-sized, and the antenna needs to have a low posture, but to match with a power supply line over a wide bandwidth, the size of the base plate has to be changed, and the antenna needs to be tuned to a plurality of frequencies, which causes a problem that the constitution becomes complicated.
The present invention has been developed in view of the above situation, and an object thereof is to provide a capacity loaded planar antenna with short stubs which can acquire a small size and a low posture, can realize a wider bandwidth and can be tuned to a plurality of frequencies.
To solve the above problem of the conventional example, according to the present invention, there is provided a capacity loaded planar antenna with short stubs, comprising: a base plate; an antenna element disposed in parallel with the base plate; a plurality of short stubs which connect the antenna element to the base plate; and a side wall formed along the end portion of the base plate, which produces an effect that it is possible to acquire a small size and a low posture and realize a wider bandwidth.
According to the present invention, in the above capacity loaded planar antenna with the short stubs, a length of the short stubs is varied to vary a resonance frequency, which produces an effect that the antenna can be tuned to a plurality of frequencies.
According to the present invention, in the above capacity loaded planar antenna with the short stubs, the short stubs are formed integrally with the antenna element, and have a foldable plate-like shape, which produces an effect that the constitution can be simplified to facilitate manufacturing.
10 . . . antenna element, 20 . . . base plate, 30 . . . support plate, 40 . . . post, 50 . . . side wall, 60 . . . short pin, and 60′ . . . plate-like short stub.
An embodiment of the present invention will be described with reference to the drawings.
A capacity loaded planar antenna with short stubs according to the embodiment of the present invention comprises a base plate, an antenna element, a plurality of short stubs which connect the antenna element to the base plate, and a side wall formed along the end portion of the base plate, which can acquire a small size and a low posture and realize a wider bandwidth.
Moreover, according to the capacity loaded planar antenna with the short stubs of the embodiment of the present invention, in the above constitution, a length of the short stubs can be varied, a resonance frequency can be varied and the antenna can be tuned to a plurality of frequencies.
Furthermore, according to the capacity loaded planar antenna with the short stubs of the embodiment of the present invention, in the above constitution, the short stubs are formed integrally with the antenna element, and have a foldable plate-like shape, which can simplify the constitution to facilitate manufacturing.
[Constitution of the Present Antenna:
The constitution of the capacity loaded planar antenna with the short stubs according to the embodiment of the present invention (the present antenna) will be described with reference to
As shown in
[Respective Components]
The antenna element 10, the base plate 20 and the support plate 30 have a constitution similar to a conventional constitution. It is to be noted that the antenna element 10 and the base plate 20 have a disc-like shape, but may have a regular polygonal shape.
[Side Wall 50]
The side wall 50 is formed in a vertical direction along the end portion of the periphery of the base plate 20.
The optimum height of the side wall 50 depends on a size (a diameter) Dd of the base plate 20. For example, in case of Dd=160 mm, a high bandwidth is acquired in a range of the height of the side wall 50 ho<0.17λ (λ: a wavelength), and when ho=0.13λ, a maximum value of 32.4% of the bandwidth can be realized.
It is to be noted that a thickness of the side wall 50 is to be about 1 mm, but the thickness is not limited to this example.
Moreover, in another example, when a diameter d of the antenna element 10 is 0.360λ and a diameter Dd of the base plate 20 is 1.067λ, a height h of the side wall 50 may be set to 0.067λ.
[Short Pin 60]
Unlike conventional posts 40, the short pins (the short stubs) 60 are not installed in a vertical direction with respect to the base plate 20, but as shown in
The length of the short pins 60 can be varied, whereby a resonance frequency can be varied, and the antenna can be tuned to a plurality of frequencies.
Moreover, the shape of the short pins 60 is not limited to a linear shape, but may be a curved shape, and the shape is not limited to the fine pin shape, but may be a strip-like shape.
[Vertical Plane Radiation Directivity:
The vertical plane radiation directivity of the present antenna will be described with reference to
In the vertical plane radiation directivity of the present antenna, as shown in
[Horizontal Plane Radiation Directivity:
The horizontal plane radiation directivity of the present antenna will be described with reference to
In the horizontal plane radiation directivity of the present antenna, as shown in
[Bandwidth When Height of Side Wall Varies:
Next, the bandwidth when the height of the side wall varies will be described with reference to
In
That is, in
As shown in
[VSWR When Length of Short Stubs Can be Varied:
Next, the VSWR when the length of the short stubs can be varied will be described with reference to
It is to be noted that a curve a in
As seen from
[Shape of Short Stubs:
Next, the shape of the short stubs will be described with reference to
In consequence, unlike a case where the short stubs (the short pins) are vertically connected to the base plate 20, a wider bandwidth can be acquired by obliquely connecting the linear or curved short stubs.
[Bandwidth When Length of Short Stubs Can be Varied:
Next, the bandwidth when the length of the short stubs can be varied will be described with reference to
It is to be noted that
It is seen that a satisfactory bandwidth can be obtained approximately in a range of s/λ of 0 to 0.06.
For example, in the case of the distance ss=14 mm, the bandwidth of VSWR<1.5 is 2.6% in the conventional constitution, whereas the wider bandwidth can be acquired in a range of s<0.09λ and a maximum value of 24.5% can be realized when s=0.
[Resonance Frequency When Length of Short Stubs Can be Varied:
Moreover, the resonance frequency when the length of the short stubs can be varied will be described with reference to
Furthermore,
It is seen that satisfactory frequency characteristics are obtained approximately in a range of s/λ of 0 to 0.04.
[Another Shape 1 of Short Stubs:
Another shape of the short stubs will be described with reference to
As shown in
In consequence, the plate-like short stub 60′ is formed integrally with the antenna element 10, which can facilitate attaching of the antenna element 10 to the base plate 20.
[Still Another Shape 2 of Short Stubs:
Furthermore, the short stubs may have a constitution shown in
As shown in
In consequence, the plate-like short stubs 60′ are formed integrally with the antenna element 10, which can facilitate the attaching of the antenna element 10 to the base plate 20.
The present antenna includes the plurality of short stubs 60 which connect the antenna element 10 to the base plate 20, and the side wall 50 formed along the end portion of the base plate 20, which produces an effect that a small size and a low posture can be acquired, and a wider bandwidth can be realized.
Moreover, according to the present antenna, since the length of the short stubs 60 can be varied, there is produced an effect that the resonance frequency can be varied, and the antenna can be tuned to a plurality of frequencies.
Furthermore, according to the present antenna, since the short stubs are formed integrally with the antenna element 10 as the foldable plate-like short stub 60′, there is produced an effect that the constitution can be simplified to facilitate manufacturing.
The present invention is suitable for a capacity loaded planar antenna with short stubs which can acquire a small size and a low posture, can realize a wider bandwidth and can be tuned to a plurality of frequencies.
Number | Date | Country | Kind |
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2008-139617 | May 2008 | JP | national |
Number | Date | Country | |
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Parent | PCT/JP2009/002310 | May 2009 | US |
Child | 12926532 | US |