COGNITIVE RADIO ANTENNA ASSEMBLY
20170271751 · 2017-09-21
Inventors
Cpc classification
H01Q21/28
ELECTRICITY
H01Q9/42
ELECTRICITY
H01Q9/0421
ELECTRICITY
H01Q5/321
ELECTRICITY
H01Q5/314
ELECTRICITY
International classification
H01Q21/28
ELECTRICITY
H01Q5/321
ELECTRICITY
Abstract
The cognitive radio antenna assembly includes two boards, a main board that has an ultra-wideband antenna (UWB) and also serves as a ground plane for the reconfigurable antenna, and an elevated MIMO board having two planar inverted-F antennas (PIFAs) that are reconfigurable to selectively operate on different frequency bands. Each PIFA has a radiating patch having a slot bridged by PIN diodes and DC blocking capacitors on opposite sides of the slot. The resonant frequency of each PIFA is controlled by which diodes are switched on and off. The PIFA antennas are shorted to the ground plane the (UWB antenna) on the main board by shorting walls. The PIFA antennas are capable of resonating from the 700 MHz band through 3000 MHz, while the UWB senses the spectrum over the entire bandwidth. The antenna assembly is compact, being suitable for cellular phone and wireless applications in 4G wireless standards.
Claims
1. A cognitive radio antenna assembly, comprising: a main board having a top face and a bottom face, the bottom face having an ultra-wideband spectrum sensing antenna disposed thereon, the top face having a ground plane for the ultra-wideband antenna disposed thereon, the ground plane being in electrical communication with the ultra-wideband spectrum sensing antenna; and an upper multiple-input-multiple-output (MIMO) board disposed above the main board, the upper MIMO board having a pair of reconfigurable multiband planar inverted-F antennas (PIFAs) disposed thereon, wherein the pair of reconfigurable multiband planar inverted-F antennas are in electrical communication with the ultra-wideband spectrum sensing antenna such that the ultra-wideband spectrum sensing antenna serves as a secondary ground plane for the pair of reconfigurable multiband planar inverted-F antennas.
2. The cognitive radio antenna assembly according to claim 1, wherein the ultra-wideband antenna is a monopole antenna.
3. The cognitive radio antenna assembly according to claim 1, wherein each said reconfigurable multiband planar inverted-F antenna comprises an elevated patch antenna having a slot defined therein, each said slot having slits formed on opposing sides thereof.
4. The cognitive radio antenna assembly according to claim 3, wherein each said elevated patch antenna of each said reconfigurable multiband planar inverted-F antenna further comprises an upper portion defined above the respective slot, a lower portion defined below the respective slot, and at least one PIN diode connected between the upper portion and the lower portion on opposite sides of the slot.
5. The cognitive radio antenna assembly according to claim 4, wherein the at least one PIN diode selectively shorts the upper and lower portions of the respective patch antenna when the at least one PIN diode is conducting in order to selectively change an electrical length and resonant frequency of the respective patch antenna.
6. The cognitive radio antenna assembly according to claim 1, wherein the ultra-wideband antenna and the reconfigurable multiband PIFAs are operable in frequency bands between 700 MHz and 3 GHz.
7. The cognitive radio antenna assembly according to claim 1, wherein the assembly is a substantially flat assembly measuring about 65×120 mm.sup.2, being dimensioned and configured for use in smart phones and LTE mobile handsets.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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[0026] Similar reference characters denote corresponding features consistently throughout the attached drawings.
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0027] The cognitive radio antenna assembly includes two boards, a main board that has an ultra-wideband antenna (UWB) and also serves as a ground plane for the reconfigurable antenna, and an elevated MIMO board having two planar inverted-F antennas (PIFAs) that are reconfigurable to selectively operate on different frequency bands. Each PIFA has a radiating patch having a slot bridged by PIN diodes and DC blocking capacitors on opposite sides of the slot. The resonant frequency of each PIFA is controlled by which diodes are switched on and off. The PIFA antennas are shorted to the ground plane (the UWB antenna) on the main board by shorting walls. The PIFA antennas are capable of resonating from the 700 MHz band through 3000 MHz, while the UWB senses the spectrum over the entire bandwidth. The antenna assembly is compact, being suitable for cellular phone and wireless applications in 4G networks.
[0028] Referring to
[0029] The main board 102 may have dimensions of 65 mm×120 mm. The ultra-wideband antenna is a monopole antenna formed on the main board 102. The sensing element 104 of the ultra-wideband antenna is formed on the bottom face of the main board 102, as shown in
[0030] The upper or MIMO board 106 has two planar inverted-F antennas (PIFA) 108 formed thereon that are reconfigurable MIMO antennas.
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[0033] Returning now to
[0034] The ultra-wideband antenna 104 is used as a sensing antenna for the cognitive radio front-end, which is the first stage of cognition to identify the available bands via scanning of a wide range of frequencies. The second stage, which is the communication stage, is where the MIMO antennae 108 are utilized. In this stage, the ultra-wideband antenna 104 is utilized as the ground plane for the MIMO antenna 108.
[0035] Specifically, in the second stage of cognitive operation, the trapezoidal sensing element 107 of antenna 104 serves as a secondary ground plane for the MIMO antenna 108. The SMA connectors 116 electrically connect the MIMO antennae 108 to the secondary ground plane (i.e., trapezoidal sensing element 107 of antenna 104), as best shown in
[0036] Referring to
TABLE-US-00001 TABLE 1 Diode Switching States in Mode 1 Through Mode 4 Diode 1-LA- Diode 2-LA- Diode 3-RA- Diode 4-RA- S. No. LD 125a RD 125b LD 125c RD 125d Mode-1 OFF OFF OFF OFF Mode-2 ON OFF OFF ON Mode-3 OFF ON ON OFF Mode-4 ON ON ON ON LA = Left Antenna (108a) LD = Left Diode 125a or 125c RA = Right Antenna (108b) RD = Right Diode 125b or 125d
TABLE-US-00002 TABLE 2 Resonant Frequencies of PIFA Antennas S. No. Band 1 Band 2 Mode-1 1093 1900 Mode-2 770 1640 Mode-3 994 1500 Mode-4 1740 —
[0037] It will be seen that the antenna assembly 10 has a compact form factor, measuring 65×120 mm.sup.2 and 5.8 mm high, rendering the assembly suitable for smart phones and LTE mobile handsets, as well as other compact wireless devices. The frequency range of the antenna assembly 10, including an ultra-wideband antenna for sensing the spectrum for available frequencies and reconfigurable multiband MIMO transmit and receive antennas to support communications on any available frequency, makes it suitable for a cognitive radio platform for 4G devices. The planar structure of the antennas and operating characteristics of the antennas and control circuitry are easily integrated with other microwave or digital ICs and other low profile microwave components so that the assembly 10 can be easily accommodated within wireless handheld devices in wireless bands between 700 MHz and 3 GHz.
[0038] It is to be understood that the present invention is not limited to the embodiments described above, but encompasses any and all embodiments within the scope of the following claims.