COLLINEAR ANTENNA ASSEMBLY AND SERIES-FED OMNIDIRECTIONAL COLLINEAR ANTENNA ARRAY
20190267720 ยท 2019-08-29
Inventors
Cpc classification
H01Q9/30
ELECTRICITY
H01Q21/10
ELECTRICITY
H01Q21/12
ELECTRICITY
International classification
Abstract
A collinear antenna assembly and a series-fed omnidirectional collinear antenna array are provided. The collinear antenna assembly includes a plurality of phase delayers connected in series, and an end portion of each phase delayer is connected to an antenna radiating unit; the phase delayer includes a circuit wire printed on a dielectric plate, two ends of the circuit wire are connected to the antenna radiating unit, a wire length, a wire width and a wire spacing of the circuit wire are set based on preset wiring rules, the wire lengths, the wire widths and the wire spacing of the circuit wires of the phase delayers set based on different preset wiring rules are different, so that a phase and an amplitude fed to each antenna radiating unit are accurately controlled.
Claims
1. A collinear antenna assembly, comprising: a plurality of phase delayers connected in series, wherein an end portion of each phase delayer is connected to an antenna radiating unit; and the phase delayer comprises a circuit wire printed on a dielectric plate, an end portion of the circuit wire is connected to the antenna radiating unit, a wire length, a wire width and a wire spacing of the circuit wire are set based on preset wiring rules, and at least one of the wire lengths, the wire widths and the wire spacing of the circuit wire set based on different preset wiring rules are different.
2. The collinear antenna assembly according to claim 1, wherein the circuit wire on the phase delayer is an arcuate wiring or a curved wiring.
3. The collinear antenna assembly according to claim 1, wherein an appearance shape of the phase delayer is a rectangle, a circle, an ellipse or a polygon.
4. The collinear antenna assembly according to claim 1, wherein the antenna radiating unit is a metal antenna radiating unit.
5. The collinear antenna assembly according to claim 2, wherein the metal antenna radiating unit is a copper antenna radiating unit.
6. The collinear antenna assembly according to claim 1, wherein the antenna radiating unit is printed on the dielectric plate.
7. The collinear antenna assembly according to claim 1, wherein the dielectric plate comprises a dielectric substrate or a metal stamping plate.
8. The collinear antenna assembly according to claim 7, wherein the dielectric substrate comprises a single-layer PCB printed circuit board or a multi-layer PCB printed circuit board.
9. The collinear antenna assembly according to claim 2, wherein the dielectric plate comprises a dielectric substrate or a metal stamping plate.
10. The collinear antenna assembly according to claim 9, wherein the dielectric substrate comprises a single-layer PCB printed circuit board or a multi-layer PCB printed circuit board.
11. The collinear antenna assembly according to claim 3, wherein the dielectric plate comprises a dielectric substrate or a metal stamping plate.
12. The collinear antenna assembly according to claim 11, wherein the dielectric substrate comprises a single-layer PCB printed circuit board or a multi-layer PCB printed circuit board.
13. The collinear antenna assembly according to claim 4, wherein the dielectric plate comprises a dielectric substrate or a metal stamping plate.
14. The collinear antenna assembly according to claim 13, wherein the dielectric substrate comprises a single-layer PCB printed circuit board or a multi-layer PCB printed circuit board.
15. The collinear antenna assembly according to claim 5, wherein the dielectric plate comprises a dielectric substrate or a metal stamping plate.
16. The collinear antenna assembly according to claim 15, wherein the dielectric substrate comprises a single-layer PCB printed circuit board or a multi-layer PCB printed circuit board.
17. The collinear antenna assembly according to claim 6, wherein the dielectric plate comprises a dielectric substrate or a metal stamping plate.
18. The collinear antenna assembly according to claim 17, wherein the dielectric substrate comprises a single-layer PCB printed circuit board or a multi-layer PCB printed circuit board.
19. A series-fed omnidirectional collinear antenna array, comprising: a feed-through connector, a supporting tube, an impedance matching assembly and a collinear antenna assembly connected in series; wherein an antenna radiating unit at an end portion of the collinear antenna assembly is connected to the impedance matching assembly; and the collinear antenna assembly refers to the collinear antenna assembly according to claim 1.
20. The series-fed omnidirectional collinear antenna array according to claim 19, wherein the feed-through connector comprises a feeder and a joint.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0017] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings to be used in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings in the following description are merely the embodiments of the present invention, and those skilled in the art can further obtain other drawings according to the following drawings provided by the embodiments of the present invention without going through any creative work.
[0018]
[0019]
[0020]
[0021]
DETAILED DESCRIPTION
[0022] The technical solutions in the embodiments of the present invention are clearly and completely described below with reference to the drawings in the embodiments of the present invention, and obviously, the described embodiments are merely a part of embodiments of the present invention instead of all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by those skilled in the art on the premise of not going through creative works belong to the protection scope of the present invention.
[0023] With reference to
[0024]
[0025] It needs to be noted that the circuit wire on the phase delayer 10 is an arcuate wiring or a curved wiring, so as to shorten a physical length of the antenna. An appearance shape of the phase delayer is a rectangle, a circle, an ellipse or a polygon. The antenna radiating unit is a copper antenna radiating unit or other metal antenna radiating units. The antenna radiating unit is printed on the dielectric plate. The dielectric plate includes a dielectric substrate or a metal stamping plate. The dielectric substrate includes a single-layer PCB (printed circuit board) or a multi-layer PCB, and a simple structure of the PCB board has low production cost and is convenient for mass production and assembly.
[0026] The embodiment discloses a collinear antenna assembly, which includes a plurality of phase delayers connected in series, wherein an end portion of each phase delayer is connected to an antenna radiating unit; and the phase delayer includes a circuit wire printed on a dielectric plate, an end portion of the circuit wire is connected to the antenna radiating unit, a wire length, a wire width and a wire spacing of the circuit wire are set based on preset wiring rules, and the wire lengths, the wire widths and the wire spacing of the circuit wire set based on different preset wiring rules are different. The wire length, the wire width and the wire spacing of the circuit wire of the phase delayer are set based on different preset wiring rules, so that a phase and an amplitude fed to each antenna radiating unit are accurately controlled, thus effectively controlling a maximum radiation efficiency of each antenna radiating unit, and improving a gain and a total radiation efficiency of an antenna array, so as to adapt to different application scenarios.
[0027] With reference to
[0028] It needs to be noted that the feed-through connector includes a feeder and a joint.
[0029] The embodiment discloses a series-fed omnidirectional collinear antenna array, which includes a feed-through connector, a supporting tube, an impedance matching assembly and a collinear antenna assembly connected in series; wherein an antenna radiating unit at an end portion of the collinear antenna assembly is connected to the impedance matching assembly; the collinear antenna assembly includes a plurality of phase delayers connected in series, wherein an end portion of each phase delayer is connected to an antenna radiating unit; and the phase delayer includes a circuit wire printed on a dielectric plate, an end portion of the circuit wire is connected to the antenna radiating unit, a wire length, a wire width and a wire spacing of the circuit wire are set based on preset wiring rules, and the wire lengths, the wire widths and the wire spacing of the circuit wire set based on different preset wiring rules are different. As shown in
[0030] In conclusion:
[0031] The embodiments of the present invention disclose a collinear antenna assembly and a series-fed omnidirectional collinear antenna array, wherein the collinear antenna assembly includes a plurality of phase delayers connected in series, and an end portion of each phase delayer is connected to an antenna radiating unit; the phase delayer includes a circuit wire printed on a dielectric plate, two ends of the circuit wire are connected to the antenna radiating unit, a wire length, a wire width and a wire spacing of the circuit wire are set based on preset wiring rules, the wire lengths, the wire widths and the wire spacing of the circuit wire of the phase delayer set based on different preset wiring rules are different. The wire length, the wire width and the wire spacing of the circuit wire of the phase delayer are set based on different preset wiring rules, so that a phase and an amplitude fed to each antenna radiating unit are accurately controlled, thus effectively controlling a maximum radiation efficiency of each antenna radiating unit, and improving a gain and a total radiation efficiency of an antenna array, so as to adapt to different application scenarios.
[0032] The various embodiments in the description are described in a progressive manner, each embodiment focuses on the differences from other embodiments, and the same and similar parts among the various embodiments can be seen from each other.
[0033] The foregoing description of the disclosed embodiments enables those skilled in the art to achieve or use the present invention. The various modifications to these embodiments will be apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention will not be limited to these embodiments shown herein, and shall has a widest scope consistent with the principles and novel features disclosed herein.