The present invention relates to an antenna device having a plurality of antenna elements and, more particularly, to an antenna device which reduces interference between the antenna elements and achieves space-saving and miniaturization.
As an antenna device, there is known a diversity antenna which improves the transmission rate of a signal by receiving identical wireless signals separately by a plurality of antenna elements, and using a received signal from an antenna element superior in a radio wave state on a priority basis. Also, recently, as an antenna device, a MIMO (Multi-Input Multi-Output) antenna which improves the transmission rate of a signal dramatically by transmitting or receiving a plurality of different wireless signals within an identical bandwidth simultaneously using a plurality of antenna elements and by increasing the number of channels of a signal as much as the number of the antenna elements is being paid attention.
When performing wireless communication using a diversity antenna or a MIMO antenna mentioned above, it is said that it is desirable that a plurality of antenna elements are in a low correlation state with each other as much as possible. However, when a plurality of antenna elements are mounted onto a radio apparatus, a radio terminal or the like, a distance between the antenna elements often cannot be separated sufficiently relative to the wavelength of a received radio wave due to restrictions in the size of the apparatus or the terminal and in a space which can be used for the antenna elements. Therefore, there is a problem that a low correlation cannot be realized in such occasions due to electromagnetic interference between a plurality of antenna elements (inter-antenna element interference), and the communication performance of a diversity antenna and a MIMO antenna degrades.
Accordingly, there is known an electronic apparatus equipped with an antenna device which makes interference between antenna elements be reduced by forming a slotline of a length corresponding to ¼ wavelength of the resonance frequency of the antenna elements into a portion corresponding to an area between the plurality of antenna elements among end parts of a ground pattern connected to the plurality of antenna elements through feeding points (patent document 1), for example.
However, in an antenna described in patent literature 1, there is caused a problem that, when a slotline is provided in an end part of a ground pattern, an installation space for various devices installed on the ground pattern becomes small due to a space corresponding to the length of the slotline because the slotline of the length of ¼ wavelength corresponding to the resonance frequency of the antenna elements is needed to be formed.
The present invention has been made in view of the above-mentioned problem, and its object is to provide an antenna device which can achieve space-saving or miniaturization while keeping given characteristics as an antenna element by reducing interference between antenna elements and wireless terminal apparatus using this.
One aspect of the present invention for achieving the above-mentioned object is an antenna device that comprises: a conductor plate; at least two antenna elements arranged near an end of the conductor plate; a first slotline formed into the conductor plate, the first slotline having a characteristic impedance of an optional numerical value Z1; a second slotline formed into the conductor plate, the second slotline having a characteristic impedance of an optional numerical value Z2 larger than Z1; one end of the first slotline being an open end in an area between the antenna elements within the conductor plate end; the other end of the first slotline connecting with one end of the second slotline; and the other end of the second slotline being short-circuited inside the conductor plate, and wireless terminal apparatus using this.
An antenna device which can achieve space-saving or miniaturization while keeping given characteristics as an antenna element by reducing interference between antenna elements and wireless terminal apparatus using this can be provided because interference between the antenna elements can be reduced in a state that the total line length of a first slotline and a second slotline is shorter than a case when a slotline of a line length of ¼ length of the wavelength corresponding to the resonance frequency of the antenna elements is formed.
Hereinafter, an exemplary embodiment of the present invention will be described in detail with reference to a drawing. However, although technically preferred limitation to carry out the present invention is made to the exemplary embodiments described below, it does not limit the scope of the invention as below.
The antenna device 10 further includes a first slotline 104 and a second slotline 105, and a width g2 of the second slotline is wider than a width g1 of the first slotline. One end of the first slotline 104 is an opening edge in an edge of the conductor plate 101, the edge belonging to an area between the antenna element 102 and 103, and the other end of the first slotline 104 connects with an end of the second slotline 105, and the other end of the second slotline 105 is short-circuited inside the conductor plate 101.
The antenna device 10 can be built-in in wireless terminal apparatus such as a personal computer and a cellular phone.
Hereinafter, an action and an effect of the exemplary embodiment of the present invention will be described.
When a slotline having an open end in an end of a conductor plate is formed in the neighborhood of the conductor plate end corresponding to an area between a plurality of antenna elements arranged in the conductor plate end, inter-antenna element interference is reduced. A slotline described in patent document 1 reduces interference between antenna elements by making the line length of a slotline be approximately a length of λ/4, where λ being the wavelength of an electromagnetic wave corresponding to the resonance frequency of the antenna elements, and by making one end of the slotline at a conductor plate end be an open end by short-circuiting the other end inside the conductor plate.
On the other hand, in the exemplary embodiment of the present invention, the first slotline 104 and the second slotline 105 have a stepped impedance structure, and thus input impedance Zstep of the first slotline 104 and the second slotline 105 seen from the open end in the end of the conductor plate 101 is expressed by the following formula.
Here, Zslot1 and Zslot2 are the characteristic impedance of the first slotline 104 and the second slotline 105, respectively, and l1 and l2 are length l1 of the first slotline and length l2 of the second slotline, respectively. Also, β is the propagation coefficient of a radio wave which propagates a slotline, and is expressed in Formula (2).
Because the opening of the first slotline 104 has only to be an open end at an end portion of the conductor plate 101 to suppress interference between the antenna elements 102 and 103, Zstep should just meet the following formula.
Z
step→∞ Formula (3)
Therefore, from Formula (1) and Formula (3), the following only has to hold.
In this exemplary embodiment, a formula Zslot1<Zslot2 holds because the width g2 of the second slotline is wider than the width g1 of the first slotline. Therefore, the left side of Formula (4) takes a numerical value smaller than 1. As a result, there will exist combinations by which the total line length l1+l2 becomes smaller than λ/4 among combinations of l1 and l2 which satisfy Formula (4), and it becomes possible to reduce the line length of the slotlines.
In
Each parameter at the time of the electromagnetic field simulation is as follows. That is, the conductor plate 101 is copper, the dielectric constant of the dielectric substrate 110 is 2.2, lengthwise length L of the conductor plate and the dielectric substrate is 204 mm, lateral length W of the conductor plate and the dielectric substrate is 200 mm, thickness d1 of the conductor plate is 30 μm and the thickness d2 of the dielectric substrate is 1 mm. The antenna elements 102 and 103 use antenna elements having a reverse-F shape as shown in
Regarding a width of a slotline, the slotline of λ/4 length has a width of 0.5 mm, and the width g2 and the width g1 of the first slotline and the second slotline of this exemplary embodiment are 0.5 mm and 5 mm, respectively. About a length of a slotline, the slotline of λ/4 length has a length of 26.25 mm, and both of the length l1 of the first slotline and the length l2 of the second slotline of this exemplary embodiment are 7.35 mm.
As shown in
As above, in this exemplary embodiment, inhibiting effect of interference between antenna elements can be obtained with the total line length l1+l2 of the first slotline 104 and the second slotline 105 that is a numerical value smaller than λ/4. Therefore, in this exemplary embodiment, there can be realized an antenna device which can obtain antenna characteristics to sufficiently reduce interference between antenna elements and which can achieve space-saving or miniaturization, and wireless terminal apparatus using this.
Meanwhile, when relational expressions of the arithmetic mean and the geometric mean that are generally known are applied to the left side of Formula (4), the following formula holds.
The equal sign holds between the first term and the second term of Formula (5) when the following formula holds.
l
1
=l
2 Formula (6)
Therefore, the first term of Formula (5) at that time becomes a minimum value, and, at the same time, total line length l1+l2 also becomes a minimum value. Accordingly, a structure that satisfies Formula (4) and Formula (6) is most desirable. In this regard, however, in this exemplary embodiment, Formula (4) should be met approximately, and a structure is not limited to a structure that satisfies Formula (6).
Furthermore, as shown in
As above, an antenna device which can achieve miniaturization and space-saving while keeping a given characteristics as an antenna element and wireless terminal apparatus using this can be provided by the first exemplary embodiment of the present invention because interference between the antenna element can be reduced in a state that the total line length of the first slotline and the second slotline is shorter than a case when a slotline of a line length of a length of ¼ of the wavelength corresponding to the resonance frequency of an antenna element is formed.
An enlarged perspective view of the conductor parts 301a and 301b is shown in
Hereinafter, an effect of the conductor parts 301a and 301b that are the features of the second exemplary embodiment will be described. Because an area of opposing conductor parts of a slotline is increased only in the first slotline 104 due to the conductor parts 301a and 301b, characteristic impedance Zslot1 of the first slotline 104 becomes smaller than characteristic impedance Zslot2 of the second slotline 105. Therefore, the same effect as the first exemplary embodiment can be obtained because the first slotline 104 and the second slotline 105 form a stepped impedance structure and the left side of Formula (4) becomes smaller than 1.
Also similar to the first exemplary embodiment are: a point that total line length l1+l2 of slotlines will be a minimum value by satisfying Formula (6); and a point that a structure similar to
Furthermore, as shown in
As shown in
Thus, according to the second exemplary embodiment of the present invention, an antenna device which can achieve space-saving or miniaturization while keeping given characteristics as an antenna element and wireless terminal apparatus using this can be provided, because interference between antenna elements can be reduced in a state that the total line length of the first slotline and the second slotline is shorter than a case where a slotline of a line length of ¼ length of the wavelength corresponding to the resonance frequency of the antenna elements is formed.
The antenna device 30 is different from the antenna device 10 of the first exemplary embodiment: in a point that the width g1 of the first slotline and the width g2 of the second slotline may be equal; and in a point that at least one or more pieces of through-hole 501 are further formed in the dielectric substrate 110 that overlaps with the gap part of the second slotline 105, and the other components are similar.
Hereinafter, an effect of the through-hole 501 which is the feature of this exemplary embodiment will be described. By the through-hole 501, an effective dielectric constant in the space between the opposing conductor parts of the second slotline 105 declines, and as a result, characteristic impedance Zslot2 of the second slotline 105 becomes larger than characteristic impedance Zslot1 of the first slotline 104. Therefore, the same effect as the first exemplary embodiment can be obtained because the first slotline 104 and the second slotline 105 becomes a stepped impedance structure, and the left side of Formula (4) becomes smaller than 1.
Also similar to the first exemplary embodiment are: the point that the total line length l1+l2 of slotlines will be a minimum value by satisfying Formula (6); and the point that a structure similar to
Thus, according to the third exemplary embodiment of the present invention, an antenna device which can achieve space-saving or miniaturization while keeping given characteristics as an antenna element and wireless terminal apparatus using this can be provided, because interference between antenna elements can be reduced in a state that the total line length of the first slotline and the second slotline is shorter than a case where a slotline of a line length of ¼ length of the wavelength corresponding to the resonance frequency of the antenna elements is formed.
An antenna device 40 is different from the antenna device 10 of the first exemplary embodiment: in a point that the width g1 of the first slotline and the width g2 of the second slotline may be equal; and in a point that a dielectric part 601 having a dielectric constant larger than the dielectric constant of the dielectric substrate 110 is filled into at least part of a region among the gap part of the slotline 104 and its neighborhood spaces except for the conductor plate 101, and thus the other components are similar.
Hereinafter, an effect of the dielectric part 601 will be described. By the dielectric part 601, a capacitance between the opposing edges of the conductor plate 101 that form the first slotline 104 is increased. Therefore, characteristic impedance Zslot1 of the first slotline 104 becomes smaller than characteristic impedance Zslot2 of the second slotline 105. Accordingly, the same effect as the first exemplary embodiment can be obtained because the first slotline 104 and the second slotline 105 become a stepped impedance structure, and the left side of Formula (4) becomes smaller than 1.
Also similar to the first exemplary embodiment are: a point that the total line length l1+l2 of slotlines will be a minimum value by satisfying Formula (6); and a point that a structure similar to
Thus, according to the fourth exemplary embodiment of the present invention, an antenna device which can achieve space-saving or miniaturization while keeping given characteristics as an antenna element and wireless terminal apparatus using this can be provided, because interference between antenna elements can be reduced in a state that the total line length of the first slotline and the second slotline is shorter than a case where a slotline of a line length of ¼ length of the wavelength corresponding to the resonance frequency of the antenna elements is formed.
Hereinafter, an effect of the magnetic substance part 701 will be described. By the magnetic substance part 701, a series inductance of the second slotline 105 as a transmission line increase. Therefore, characteristic impedance Zslot2 of the second slotline 105 becomes larger than characteristic impedance Zslot1 of the first slotline 104. Accordingly, the same effect as the first exemplary embodiment can be obtained because the first slotline 104 and the second slotline 105 become a stepped impedance structure, and the left side of Formula (4) becomes smaller than 1.
Also similar to the first exemplary embodiment are: a point that the total line length l1+l2 of slotlines will be a minimum value by satisfying Formula (6); and a point that a structure similar to
Thus, according to the fifth exemplary embodiment of the present invention, an antenna device which can achieve space-saving or miniaturization while keeping given characteristics as an antenna element and wireless terminal apparatus using this can be provided, because interference between antenna elements can be reduced in a state that the total line length of the first slotline and the second slotline is shorter than a case where a slotline of a line length of ¼ length of the wavelength corresponding to the resonance frequency of the antenna elements is formed.
Meanwhile, the first, second, third, fourth and fifth exemplary embodiments mentioned above can be combined within a range where their contents do not disagree with each other. Various modifications of the present invention are possible within the scope of the invention described in the claims without limiting to the above-mentioned exemplary embodiments, and it goes without saying that those are also included within the scope of the present invention.
This application claims priority based on Japanese application Japanese Patent Application No. 2012-064789 filed on Mar. 22, 2012, the disclosure of which is incorporated herein in its entirety.
The present invention relates to an antenna device having a plurality of antenna elements, and, more particularly, to an antenna device which reduces interference between antenna elements and achieves space-saving and miniaturization.
Number | Date | Country | Kind |
---|---|---|---|
2012-064789 | Mar 2012 | JP | national |
Filing Document | Filing Date | Country | Kind |
---|---|---|---|
PCT/JP2013/001767 | 3/15/2013 | WO | 00 |