ADJUSTABLE PHASE SHIFTING DEVICE FOR ARRAY ANTENNA AND ANTENNA
20170288306 ยท 2017-10-05
Inventors
Cpc classification
H01Q23/00
ELECTRICITY
International classification
Abstract
This paper discloses an adjustable phase shifting device for antenna array as well as an antenna array, the device including a branched network of feed lines containing transformer portions of varying width for reducing reflection of signals passing through the network and coupling the common input port with the output ports placed along the first edge of the device via one or more junctions and including portions of feed lines placed along the second edge of the device, the dielectric members mounted on one rod adjacent to these portions of feed lines and can be moved along ones to synchronously adjust the phase relationship between the output ports, the dielectric members having one or more transformer portions for reducing reflection of signals passing through the network, wherein the dielectric member mounted adjacent to portions of feed lines placed along the second edge of the device and connected with the first junction from input port contains transformer portions at both ends and other dielectric members contain transformer portions only at one end which overlap a portion of feed line placed along the second edge of the device.
Claims
1. An adjustable phase shifting device for feeding signals between a common input port and two or more output ports, the device including a branched network of feed lines containing transformer portions of varying width for reducing reflection of signals passing through the network and coupling the common input port with the output ports placed along the first edge of the device via one or more junctions and including portions of feed lines placed along the second edge of the device, the dielectric members mounted on one rod adjacent to these portions of feed lines and can be moved along ones to synchronously adjust the phase relationship between the output ports, the dielectric members having one or more transformer portions for reducing reflection of signals passing through the network, wherein the dielectric member mounted adjacent to portions of feed lines placed along the second edge of the device and connected with the first junction from input port contains transformer portions at both ends and other dielectric members contain transformer portions only at one end which overlap a portion of feed line placed along the second edge of the device.
2. The device of claim 1 wherein transformer portions of the dielectric members formed by cuts reducing width of the dielectric members.
3. The device of claim 1 wherein transformer portions of the dielectric members formed by cuts reducing thickness of the dielectric members.
4. The device of claim 1 wherein the rod made of material having small thermal extension, for example metal or fiberglass.
5. The device of claim 1 wherein the feed lines consist of strip lines placed inside of the conductive box having two wide walls placed above and below strip lines and two narrow walls.
6. The device of claim 5 wherein the conductive cavity made as a metal profile by extrusion.
7. The device of claims 5 t 6 wherein a conductive box contains the longitudinal projections on the inner surfaces of wide walls nearby the second edge of the device.
8. The device of claims 1 wherein each dielectric member contains two equal parts placed between wide walls on both sides of each portion of strip line placed along the second edge of the device and fixed on a rod.
9. The device of claim 1 wherein each dielectric member made as one part containing the longitudinal slot for a strip line and the longitudinal hole or channel for a rod.
10. The device of claim 8 wherein each dielectric member contains the longitudinal slots for the longitudinal projections placed on inner surfaces of wide walls.
11. The device of claim 8 wherein each dielectric member is made of upper and lower layers and a plastic profile made by extrusion.
12. The device of claim 1 wherein each dielectric member made as one part containing the longitudinal slot for a strip line and the lugs for mounting the dielectric member on a rod by installation these lugs into holes made in a rod.
13. The device of claim 12 wherein the dielectric members made by injection in a mold has at least one gap for adjusting the contact between the dielectric members and the feed network.
14. The device of claim 1 wherein at least some portions of the strip lines connected with output ports contain dielectric substrates placed between wide walls on both sides of strip lines.
15. The device of claim 14 wherein dielectric substrates made of material having low dielectric constant, preferably foam-type material, for example polyethylene foam.
16. The device of claim 1 wherein at least some portions of the strip lines connected with output ports contain nonconductive spacers supporting the strip lines between widewalls.
17. The device of claim 1 wherein the strip lines formed on one side of the lower dielectric substrate supporting the strip lines between wide walls.
18. The device according to claim 1 wherein the upper dielectric substrate is placed on the strip lines formed on the lower dielectric substrate.
19. The device of claim 1 wherein the strip lines formed on both sides of the dielectric substrate supporting the strip lines between wide walls.
20. The device of claim 1 wherein at least one feed line placed between a junction and an output port contains the portion having wave impedance at least 20% more than impedance of the output port and the transformer portion connected to an output port.
21. (canceled)
Description
DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
[0044] The adjustable phase shifting device for antenna array comprises input port, at least two output ports, a feed network for connecting input port with output ports, dielectric substrates for supporting feed network, a rod, dielectric members fixedly mounted on the rod and metallic rectangular cavity. The highly integrated feed network for connecting antenna elements has integrated strip lines instead of cables and is secured between two dielectric substrates. Two ends of conductive cavity are open while other end faces are closed to form a rectangular cavity on one side of which the feed network mounted with dielectric members is placed. The dielectric members mounted on the rod according to the design and having guide slot clip the strip lines between the upper and lower layer. The other side of the metallic cavity is placed with guide slot and guide projection, the guide projection stuck in the guide slot for dielectric members while the rod placed in the guide slot of the metallic cavity such that the dielectric members can move on the planar surface of the feed network by pulling the rod. This new-type beam forming network illustrates that if an antenna array has N radiators, the beam forming network would have N-1 phase shifters, to achieve a good direction pattern both horizontally and vertically. Further, in this design, the feed network for connecting antenna array units has integrated strip lines instead of cables.
[0045] The feed network, which is highly integrated for connecting antenna array units and uses integrated strip lines instead of cables, are secured between two symmetrical dielectric substrates upon which is placed with fixed holes for corresponding feed network. The dielectric substrates must be a little longer than the feed network while the feed network must be wider than the dielectric substrates, the input and output ports of the feed network having no dielectric substrates to overlap them.
[0046] In this application, if an antenna array has N radiators, the beam forming network would have N-1 phase shifters.
[0047] The cavity for feed network installation is a rectangular conductive cavity with two open ends, side wall of the narrower side of the cavity placed with mounting hole for input and output ports, while surface of the wider side placed with mounting hole for dielectric substrate.
[0048] Inside the conductive cavity, one side has guide slot and guide projection, and the side with mounting hole has the feed network placed with dielectric substrate. Dielectric members are secured on the rod with up-down symmetry and with a narrow deep slot down to the bottom which is not running through.
[0049] The strip lines are in the middle of the narrow deep slot related to the dielectric members one side of which has a guide slot. On the dielectric members there are one or more gaps whose shape and quantity are determined by design, and on one side at the bottom there are hot-riveting pillars for fixing the fiberglass rod. The dielectric members, either made by two dielectric sheets or made as an entirety, has a chamfer for strip lines, and the slide rod mounted with dielectric members is positioned on one side of the conductive cavity where guide slot and guide projection are placed, a small separated cavity having input and output ports inside is positioned on the other side. The conductive cavity placed with feed network is configured by single- or multi-layer cavity.
[0050] A more detailed description of this application may be acquired by referring to the following embodiments in cooperation with the accompanying drawings. The embodiments are for the understanding and description of this application, but should not be interpreted as a limitation on this application.
Embodiment One
[0051] The beam-forming network for the electrically adjustable antenna as claimed in this application referring to
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Embodiment Two
[0053] The beam-forming network for electrically adjustable antenna of this embodiment as shown in
Embodiment Three
[0054] Referring to
[0055] While the foregoing have been merely preferred embodiments related to this application, it should not be interpreted as a limitation on the scope of this application. Those skilled in the art will recognize that various changes, modifications and equivalents may be made without departing from the spirit and scope of the invention.