This invention relates generally to antennas for the transmission and reception of radio frequency (RF) energy, and more particularly to methods and apparatus providing high isolation between transmitting/receiving elements of multiple element antenna arrays.
Multiple in, multiple out (MIMO) antenna system are sometimes used in wireless computer networks such as local area networks (LANs) or WI-FI service. A MIMO antenna system combines the antennas by controlling phase differences and/or amplitude or gain differences between the antennas. This combination is used to form different beam shapes to eliminate interference and/or to enhance a signal in a selected direction. Thus, a MIMO antenna system is, to some degree, similar to an adaptive array.
The antenna transmitting/receiving elements used in a MIMO array may inherently have 15 DB of isolation. Any combination of the transmitting/receiving elements can be used for receiving or transmitting. However, antenna transmitting/receiving elements having only 15 dB of isolation may not achieve the most effective beam steering or adaptive steering, especially with elements having the same individual directional pattern.
In one aspect, some configurations of the present invention provide a high-isolation multiple in, multiple out (MIMO) antenna array. The array may include a ground plane, a plurality of antenna transmitting/receiving elements arranged near the periphery of the ground plane, wherein each of the antenna transmitting/receiving elements is resonant at a frequency f. Also, the array may include an isolation antenna element located on the ground plane, between the plurality of antenna transmitting/receiving elements. The isolation antenna element is also resonant at the same frequency f. The plurality of antenna transmitting/receiving elements and the resonant isolation antenna element are arranged on the ground plane arranged so as to achieve substantially greater than 15 dB isolation of the antenna transmitting/receiving elements. In some configurations, at least about 30 dB of isolation of the antenna transmitting/receiving elements can be achieved.
In another aspect, some configurations of the present invention provide a method for communicating via radio frequency (RF) energy. The method may include controlling at least one of phase or amplitude of RF energy to a plurality of antenna transmitting/receiving elements arranged near the periphery of a ground plane, wherein each of the antenna transmitting/receiving elements is resonant at least one frequency f. The method may also include providing at least one isolation antenna element located on the ground plane between the plurality of antenna transmitting/receiving elements. The isolation antenna element is also resonant at least the same frequency f. The plurality of transmitting/receiving elements and the resonant isolation antenna element are arranged on the ground plane so as to achieve substantially greater than 15 dB isolation between the antenna transmitting/receiving elements. In some configurations, 30 dB of isolation may be achieved.
In yet another aspect, some configurations of the present invention provide a method for making a high-isolation multiple in, multiple out (MIMO) antenna array. The method may include arranging a plurality of antenna transmitting/receiving elements near the periphery of a ground plane, wherein each of the antenna transmitting/receiving elements is resonant at least one frequency f. Also included is placing an isolation antenna element also resonant at least the same frequency f between the plurality of antenna transmitting/receiving elements, so as to achieve substantially greater than 15 dB isolation of the antenna transmitting/receiving elements.
It will be appreciated that some configurations of the present invention provide high isolation between the antenna transmitting/receiving elements, as well as a compact antenna that can be particularly useful for WIFI applications.
The foregoing summary, as well as the following detailed description of certain embodiments of the present invention, will be better understood when read in conjunction with the appended drawings. To the extent that the figures illustrate diagrams of the functional blocks of various embodiments, the functional blocks are not necessarily indicative of the division between hardware circuitry. It should be understood that the various embodiments are not limited to the arrangements and instrumentality shown in the drawings.
As used herein, an element or step recited in the singular and proceeded with the word “a” or “an” should be understood as not excluding plural said elements or steps, unless such exclusion is explicitly stated. Furthermore, references to “one embodiment” of the present invention are not intended to be interpreted as excluding the existence of additional embodiments that also incorporate the recited features. Moreover, unless explicitly stated to the contrary, embodiments “comprising” or “having” an element or a plurality of elements having a particular property may include additional such elements not having that property.
In some configurations of the present invention and referring to
Surprisingly, by placing a resonant isolation antenna element 18 (such as, for example, a monopole element) between antenna/receiving elements 14, 30 DB of isolation can be achieved. Thus, in some configurations of the present invention, the plurality of antenna transmitting/receiving elements 14 and resonant isolation antenna element 18 are arranged on ground plane 12 so as to achieve approximately 30 dB isolation of the antenna transmitting/receiving elements 14. For example, in one suitable configuration, there are three antenna transmitting/receiving elements 14 arranged equidistant from one another at the vertices of an equilateral triangle 20, and a single isolation antenna element 18 is situated at center 22 of triangle 20, one quarter of a wavelength (λ/4, where
away from each transmitting/receiving element 14. Such an arrangement is particularly useful for WIFI service in the 2.4 GHz or 5 GHz bands, but configurations of the present invention are not limited to these frequency ranges.
For example, parameters of three antenna transmitting/receiving elements 14 of the type shown in
Any combination of the three antenna transmitting/receiving elements 14 can be used for receiving or for transmitting so as to perform beam steering or adaptive steering. Because of the enhanced isolation between elements 14, improved beam forming is possible.
Antenna array 10 configurations of the present invention are particularly useful for WIFI service. The combination of small size and enhanced isolation of at 2.4 GHz of these configurations is believed not to have heretofore been achieved. Additional monopole antenna isolation elements 18 can be added at a correct spacing (which can be determined empirically) to achieve even greater isolation at different bands. Monopole isolation element 18 can be full length, or it can be shortened or top loaded. In some configurations of the present invention, monopole antenna isolation element 18 is ¼ wavelength along, but in some other configurations, element 18 is a top-loaded ⅛ wavelength resonant monopole. In some configurations of the present invention, antenna transmitting/receiving elements 14 are planar inverted F (PIFA) antennas, as shown in
Also provided in some configurations of the present invention is a method for communicating via radio frequency (RF) energy. The method can include controlling at least one of phase or amplitude of RF energy to a plurality of antenna transmitting/receiving elements 14 arranged near the periphery 16 of a ground plane 12. Each of the antenna transmitting/receiving elements 14 is resonant at least one frequency f. The method further includes providing at least one isolation antenna element 18 located on ground plane 12, between the plurality of antenna transmitting/receiving elements 14 and resonant at least the same frequency f. The plurality of transmitting/receiving elements 14 and the resonant isolation antenna element 18 are arranged on ground plane 12 so as to achieve substantially greater than 15 dB isolation between the antenna transmitting/receiving elements 14. In some configurations, the at least one resonant isolation antenna element 18 is arranged on ground plane 10 so as to achieve at least about 30 dB isolation of antenna transmitting/receiving elements 18.
Frequency f may be between 2 and 6 GHz, and the RF energy can also be between 2 and 6 GHz.
In some of these methods, antenna transmitting/receiving elements 14 are arranged equidistant from one another and each antenna transmitting/receiving element 14 is λ/4 distant from the isolation antenna element, where
Some configurations of the present invention provide a method for making a high-isolation multiple in, multiple out (MIMO) antenna array 10. The method can include arranging a plurality of antenna transmitting/receiving elements 14 near the periphery 16 of a ground plane 12. Each antenna transmitting/receiving element 14 is resonant at least one frequency f. Also provided is an isolation antenna element 18, which is also resonant at least the same frequency f. Element 18 is provided between the plurality of antenna transmitting/receiving elements 14, so as to achieve substantially greater than 15 dB isolation of antenna transmitting/receiving elements 14. Some configurations of the present invention include arranging transmitting/receiving elements 14 and isolation antenna element 18 to achieves at least about 30 dB of isolation of antenna transmitting/receiving elements 14. Frequency f may be, for example, between 2 and 6 GHz. In some configurations, ground plane 12 is a metal plate. Also in some configurations, three antenna transmitting/receiving elements 14 can be arranged equidistant from one another. Each antenna transmitting/receiving element 14 may be λ/4 distant from the isolation antenna element, where
In addition to other advantages cited herein, many configurations of the present invention can also provide the advantages of low angle radiation. For example, when antenna array 10 is placed on a desktop, the radiation can be focused into a relatively narrow beam that goes off to the horizon in all directions.
While the invention has been described in terms of various specific embodiments, those skilled in the art will recognize that the invention can be practiced with modification within the spirit and scope of the claims.
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Number | Date | Country | |
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20080062058 A1 | Mar 2008 | US |