1. Field of the Invention
The invention relates to a broadband circularly polarized annular ring slot antenna and, more particularly, to a broadband circularly polarized annular ring slot antenna for increasing the 3-dB-axial-ratio bandwidth without increasing the antenna size.
2. Description of Related Art
Circularly polarized (CP) antennas, known for their capabilities of reducing polarization mismatch and moderately suppressing multipath interferences, require larger bandwidths of greater than 30% to support emerging wireless-communication applications, especially those involving satellite communications. Because of the advantages of large impedance bandwidths and low profiles, printed slot antennas have received much attention in antenna design requiring enhanced 3-dB axial-ratio bandwidths.
As shown in
With reference to
In practical measurement, the 3-dB-axial-ratio bandwidth of the conventional broadband circularly polarized annular ring slot antenna is only between 3.5% and 11%, which is far below the aforementioned standard (i.e. large than 32%). Therefore, it is desired to have a significant improvement on the circular polarization performance of the conventional circularly polarized annular ring slot antenna. However, in order to improve the 3-dB-axial-ratio bandwidth of the conventional broadband circularly polarized annular ring slot antenna, not only the size of the annular ring slot unit and the grounding unit of the conventional broadband circularly polarized annular ring slot antenna have to be enlarged, but also the slot width of the annular ring slot unit of the annular ring slot antenna portion needs to be enlarged for forming the so-called wide-slot type ring slot unit. Accordingly, the whole size of the conventional broadband circularly polarized annular ring slot antenna is inevitably to be greatly increased.
The primary object of the present invention is to propose a broadband circularly polarized annular ring slot antenna, which is capable of increasing the 3-dB-axial-ratio bandwidth of larger than 32% without increasing the antenna size.
Another object of the present invention is to propose a broadband circularly polarized annular ring slot antenna which can be applied in many L-band Global Navigation Satellite Systems including the Global Positioning System (GPS) of the U.S.A., the Global Navigation Satellite System (GLNASS) of the Russia and the Galileo Positioning System of the Europe, whose operating bands range from 1164 MHz to 1610 MHz.
To achieve these objects, a broadband circularly polarized annular ring slot antenna is proposed, comprising: a substrate, having an upper surface and a lower surface; an annular ring slot antenna portion, located on the upper surface and including a grounding unit, an annular ring slot unit, a central metal unit, a first perturbation metal unit and a second perturbation metal unit, the annular ring slot unit being surrounded by the grounding unit, the central metal unit being surrounded by the annular ring slot unit; and a microstrip feeding portion, located on the lower surface and including a vertical feeding unit, a bent feeding unit and a rectangular microstrip unit, the rectangular microstrip unit being connected with the bent feeding unit and the vertical feeding unit respectively, the vertical feeding unit being extended from the bent feeding unit toward a side edge of the substrate, the bent feeding unit being extended from the vertical feeding unit toward another side edge of the substrate; wherein the first perturbation metal unit and the second perturbation metal unit of the annular ring slot antenna portion are extended from the grounding unit toward the central metal unit respectively, and the first perturbation metal unit and the second perturbation metal unit are implanted diametrically opposite with respect to the central metal unit in the annular ring slot unit.
Since the annular ring slot antenna portion includes the first perturbation metal unit and the second perturbation metal unit, which are implanted diametrically opposite with respect to the central metal unit in the annular ring slot unit, and the microstrip feeding portion includes a bent feeding unit, a vertical feeding unit, and a rectangular microstrip unit connected with both the bent feeding unit and the vertical feeding unit, the 3-dB-axial-ratio bandwidth of the broadband circularly polarized annular ring slot antenna of the present invention is much larger than that of the conventional broadband circularly polarized annular ring slot antenna (larger than 32%). Besides, by properly adjusting the material of the substrate and the size of each component (while the shape and the relative relationship of each component are fixed), the broadband circularly polarized annular ring slot antenna of the present invention can be also operated in L band (1˜0.2 GHz).
As shown in
With reference to
In this embodiment, the substrate 21 is a rectangular substrate made of a material with a low dielectric constant, such as the FR4 material. The grounding unit 221, the central metal unit 223, the first perturbation metal unit 224 and the second perturbation metal unit 225 are all thin layer copper films with thickness of 0.02 mm, but they also can be thin layer metal films made of other material, such as gold foil, silver foil or aluminum foil. The annular ring slot unit 222 of the annular ring slot antenna portion 22 has a shape of annular ring, and the central metal unit 223 has a shape of circle. Moreover, the centers of the annular ring slot unit 222 and the central metal unit 223 are overlapped. The first perturbation metal unit 224 and the second perturbation metal unit 225 are rectangular patches located on a diagonal line (not shown) of the substrate 21, respectively.
The first perturbation metal unit 224 and the second perturbation metal unit 225 of the annular ring slot antenna portion 22 are located on the diagonal line (not shown) of the substrate 21 and extended from the junction of the diagonal line (not shown) of the substrate 21 and the grounding unit 221, toward the central metal unit 223, respectively. The first perturbation metal unit 224 and the second perturbation metal unit 225 are implanted in the in the annular ring slot unit 222 diametrically opposite with respect to the central metal unit 223. Besides, the angle between the diagonal line and the extending direction of the vertical feeding unit 231 is 45 degrees.
Moreover, the annular ring slot unit 222 has an outer radius R1, an inner radius R2, a slot width Ws and an average radius. The slot width Ws is the difference between the outer radius R1 and the inner radius R2. The average radius is the average value of the outer radius R1 and the inner radius R2. For showing the sizes of the substrate 21, the annular ring slot antenna portion 22 and the microstrip feeding portion 23 of the broadband circularly polarized annular ring slot antenna according to the first embodiment of the present invention, values of the labels shown in
As shown in
With reference to
In this embodiment, the substrate 31 is a rectangular substrate made of a material with a low dielectric constant, such as the FR4 material. The grounding unit 321, the central metal unit 323, the first perturbation metal unit 324 and the second perturbation metal unit 325 are all thin layer copper films with thickness of 0.02 mm, but they also can be thin layer metal films made of other material, such as gold foil, silver foil or aluminum foil. The annular ring slot unit 322 of the annular ring slot antenna portion 32 has a shape of annular ring, and the central metal unit 323 has a shape of circle. Moreover, the centers of the annular ring slot unit 322 and the central metal unit 323 are overlapped. The first perturbation metal unit 324 and the second perturbation metal unit 325 are located on a diagonal line (not shown) of the substrate 31, respectively.
As shown in
As shown in
In addition, the annular ring slot unit 322 has an outer radius R1, an inner radius R2, a slot width Ws and an average radius. For showing the sizes of the substrate 31, the annular ring slot antenna portion 32 and the microstrip feeding portion 33 of the broadband circularly polarized annular ring slot antenna according to the second embodiment of the present invention, values of the labels shown in
Please refer to
The simulation result of the aforementioned
In
From
Moreover, from
Please refer to
In
In
The size and the antenna characteristics of these three kinds of broadband circularly polarized annular ring slot antennas according to the second embodiment of the present invention are listed in the following Table 3:
The parameters and associated values of these three kinds of broadband circularly polarized annular ring slot antennas having annular ring slot units of different slot widths according to the second embodiment of the present invention are listed as follow:
∈r=4.4, tan δ=0.02, h=0.8 mm, G=45 mm, wf=1.5 mm, L1=1 mm, L3=2 mm, wt=23 mm, wp=10 mm.
It can be seen from Table 3 that, with the average radius (14 mm), the 3-dB-axial-ratio bandwidths of these three kinds of broadband circularly polarized annular ring slot antennas according to the second embodiment of the present invention are all of greater than 32%. Moreover, the wider the slot width is, the greater the bandwidth of the circularly polarized frequency band is, and the maximum of the 3-dB-axial-ratio bandwidth can be up to 56.8%.
In order to apply in L-band Satellite System, especially in Global Navigation Satellite Systems whose operating frequency bands ranges from 1164 MHz to 1610 MHz, the broadband circularly polarized annular ring slot antennas according to the third and the fourth embodiments of the present invention are provided. The shape of each component and the relative relationship of each component of the broadband circularly polarized annular ring slot antennas according to the third and the fourth embodiments of the present invention are all the same as those according to the second embodiment shown in
Besides, in the broadband circularly polarized annular ring slot antennas according to the third embodiment of the present invention, the substrate is a rectangular substrate made of a material with a low dielectric constant, such as the FR4 material (with characteristic parameters of ∈r=4.4, tan δ=0.02, h=0.8 mm). The values of the labels used for showing the sizes of components (i.e. the substrate, the annular ring slot antenna portion and the microstrip feeding portion) of the broadband circularly polarized annular ring slot antenna according to the third embodiment of the present invention are listed in the following Table 4:
In addition, in the broadband circularly polarized annular ring slot antennas according to the fourth embodiment of the present invention, the substrate is a rectangular substrate made of the RT5880 material (with characteristic parameters of ∈r=2.2, tan δ=0.0009, h=0.6 mm). The values of the labels used for showing the sizes of components (i.e. the substrate, the annular ring slot antenna portion and the microstrip feeding portion) of the broadband circularly polarized annular ring slot antenna according to the fourth embodiment of the present invention are listed in the following Table 5:
Please refer to
The simulation results of the aforementioned
In
In
In
From
It can be seen from
Besides, as shown in
With reference to
In summary, since the annular ring slot antenna portion includes the first perturbation metal unit and the second perturbation metal unit that are implanted in the annular ring slot unit diametrically opposite with respect to the central metal unit, and the microstrip feeding portion includes a bent feeding unit, a vertical feeding unit, and a rectangular microstrip unit connected with both the bent feeding unit and the vertical feeding unit, the 3-dB-axial-ratio bandwidth of the broadband circularly polarized annular ring slot antenna of the present invention is much larger than that of the conventional broadband circularly polarized annular ring slot antenna (larger than 32%). Moreover, by having the existence of the first perturbation metal unit and the second perturbation metal unit, the broadband circularly polarized annular ring slot antenna of the present invention can increase the 3-dB-axial-ratio bandwidth, without the need to enlarge the size. Besides, by properly adjusting the material of the substrate and the size of each component (while the shape and the relative relationship of each component are fixed), the broadband circularly polarized annular ring slot antenna of the present invention can be operated in the frequency range of many L-band Satellite Systems (1˜2 GHz). As a result, the broadband circularly polarized annular ring slot antenna of the present invention can be used as the small size transceiver antenna of these Satellite Systems.
Although the present invention has been explained in relation to its preferred embodiment, it is to be understood that many other possible modifications and variations can be made without departing from the spirit and scope of the invention as hereinafter claimed.
Number | Date | Country | Kind |
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98141856 A | Dec 2009 | TW | national |
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8368596 | Tiezzi et al. | Feb 2013 | B2 |
20070115193 | Minard et al. | May 2007 | A1 |
Number | Date | Country | |
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20110134006 A1 | Jun 2011 | US |