The present invention relates to the field of wireless mobile communication, and more particularly, to a planar end-fire pattern reconfigurable antenna.
An end-fire antenna is an antenna with a maximum radiation direction parallel to a plane of radiator, and common end-fire antennas include a Yagi antenna, a spiral antenna, and the like. The end-fire antenna has wide application requirements in both military and civil fields, especially in some scenes with a limited space size, such as handheld devices, cordless phones, vehicle-mounted and aircraft systems, and the like, which often need to employ a low-profile end-fire antenna. On the other hand, a pattern reconfigurable antenna has a characteristic of dynamically controlling beam scanning, which can effectively reduce multipath fading and electromagnetic interference, and improve a channel capacity. Therefore, the low-profile, end-fire and pattern reconfigurable antenna has been widely concerned in recent years. However, radiation patterns of the low-profile end-fire antenna proposed at this stage are mostly fixed in one direction, so that flexible control cannot be implemented. Meanwhile, it is very difficult to implement a reconfigurable pattern due to an asymmetry of a structure. However, a large reflector or a multi-stage director structure are used in most of existing reconfigurable antennas, so that the antennas have a larger volume, a high profile, and a high design complexity, which are not beneficial for integrated application, and cannot be matched with development trends of integration and miniaturization of a mobile terminal device.
In view of this, in order to solve the above problems in the prior art, the present invention provides a planar end-fire pattern reconfigurable antenna, which solves problems that an existing low-profile end-fire antenna cannot implement flexible beam control, and an existing pattern reconfigurable antenna has a large volume and a high profile.
In order to achieve the above objective, the technical solutions of the present invention are as follows.
A planar end-fire pattern reconfigurable antenna includes a dielectric substrate, a radiation patch, a ground plane, a switch and bias circuit, and a coaxial cable. The dielectric substrate includes a first surface and a second surface in opposite. The radiation patch is attached to the first surface of the dielectric substrate. The ground plane is attached to the second surface of the dielectric substrate. The switch and bias circuit is arranged in a slot of the ground plane. The coaxial cable includes an outer conductor and an inner conductor. The outer conductor is connected to the ground plane, and the inner conductor penetrates through the dielectric substrate and is connected to the radiation patch. The coaxial cable is arranged at a geometric center of the planar end-fire pattern reconfigurable antenna, and used for exciting the radiation patch and the ground plane. The radiation patch is used for generating electromagnetic radiation like a magnetic dipole perpendicular to a plane of the radiation patch. The ground plane is used for generating electromagnetic radiation like an electric dipole parallel to a plane of the ground plane. The switch and bias circuit generates a reconfigurable end-fire radiation pattern by controlling on-off state combination of a switch.
Further, the magnetic dipole and the electric dipole have complementary radiation patterns, and the electromagnetic radiation of the magnetic dipole and the electromagnetic radiation of the electric dipole have a superposition effect in a first direction parallel to a plane of the dielectric substrate, and generate an offset effect in a second direction opposite to the first direction, thus forming the end-fire radiation pattern.
Further, the dielectric substrate has a circular structure.
Further, the dielectric substrate has the circular structure; and the radiation patch has an Alford loop structure, and includes outer ring branches and connecting arms, the outer ring branches are connected to the connecting arms. A gap is formed between the outer ring branches, and a number of the outer ring branches is the same as that of the connecting arms, which is 3 to 8.
Further, a shape of the outer ring branch and a shape of the connecting arm are arc, rectangular, or stepped.
Further, a line width of the outer ring branch is the same as or different from a line width of the connecting arm, and used for adjusting impedance matching of the antenna, and the line widths range from 0.5 mm to 6 mm; and a length of the outer ring branch and a length of the connecting arm are used for controlling a resonant frequency of the antenna, and a sum of the lengths of all the outer ring branches is 1 λg to 2 λg.
Further, a diameter of the ground plane is 0.4 λg to 0.6 λg.
Further, the ground plane includes a radial slot, a length of the radial slot is smaller than a radius of the ground plane, a shape of the radial slot is rectangular, fanned, or trapezoidal, and a number of the radial slots is the same as or different from the number of the outer ring branches and the number of the connecting arms, which is 3 to 8.
Further, the radial slot is internally provided with the switch and bias circuit, the switch and bias circuit is arranged at a periphery of the radial slot, and includes a PIN diode, an inductor, a capacitor, and a direct current connecting wire, and a number of the switch and bias circuits is the same as that of the radial slots.
Further, a beam scanning range of the planar end-fire pattern reconfigurable antenna is a whole 360° azimuth plane.
Compared with the prior art, the planar end-fire pattern reconfigurable antenna of the present invention has the following effects.
1. Low-profile characteristic: a single-layer board structure is used in the antenna, with a low profile, and a profile height is only 0.024λ0, thus being easy to process and integrate.
2. Good end-fire radiation characteristic: a front-to-back ratio is 25.5 dB, and a peak gain is 4.1 dBi.
3. The reconfigurability of the pattern is implemented by using a PIN diode switch, and the beam scanning range may cover the whole 360° azimuth plane.
4. The coaxial cable is used for central feeding, the antenna has a simple structure, and radiation efficiency is as high as 83%.
The specific implementation of the present invention is further described hereinafter with reference to the accompanying drawings and the specific embodiments. It shall be pointed out that the described embodiments are only some but not all of the embodiments of the present invention, and based on the embodiments of the present invention, other embodiments obtained by those of ordinary skills in the art without going through any creative work all belong to the scope of protection of the present invention.
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On-off combination manners of switches in four working states of the antenna described in the embodiment are shown in Table 1.
According to the above parameters, a reflection coefficient, a front-to-back ratio, a gain, an efficiency, a radiation pattern, and other characteristic parameters of the planar end-fire pattern reconfigurable antenna are simulated and analyzed by using high-frequency electromagnetic simulation software HFSS, and the characteristic parameters are tested and verified by using a network analyzer of Agilent Technology Company and a Satimo StarLab system. Analysis results are as follows.
Since the embodiment has a structural symmetry, curves of the reflection coefficient, the front-to-back ratio, and the gain in the states should be consistent in theory, which is also verified by simulation results. Therefore, only one simulation result curve is given in
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To sum up, the planar end-fire pattern reconfigurable antenna of the present invention has the advantages of compact size and simple structure while having excellent circuit characteristics and radiation characteristics, and reduces a complexity and a cost of a radio frequency antenna module.
Number | Date | Country | Kind |
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201810791251.4 | Jul 2018 | CN | national |
Filing Document | Filing Date | Country | Kind |
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PCT/CN2019/076009 | 2/25/2019 | WO | 00 |