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公开(公告)号:US20210234262A1
公开(公告)日:2021-07-29
申请号:US17226637
申请日:2021-04-09
Applicant: Huawei Technologies Co., Ltd.
Inventor: Xin Luo , Yi Chen , Chuanan Zhang
IPC: H01Q1/36
Abstract: An antenna includes a first helical arm and a second helical arm. The first helical arm is wound clockwise along a longitudinal direction of an axis of the antenna, and the second helical arm is wound counterclockwise along the longitudinal direction of the axis of the antenna. The second helical arm and the first helical arm form at least one intersecting point, a first feeding point is disposed on the first helical arm, a second feeding point is disposed on the second helical arm, the first feeding point and the second feeding point are two points symmetrical relative to the axis of the antenna, and any intersecting point of the at least one intersecting point further forms a third feeding point, where the first feeding point and the second feeding point are connected to a first feeding port, and the third feeding point is connected to a second feeding port.
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公开(公告)号:US11038580B2
公开(公告)日:2021-06-15
申请号:US17003949
申请日:2020-08-26
Applicant: HUAWEI TECHNOLOGIES CO., LTD.
Abstract: Various embodiments provide a method for determining polarization information and a device thereof. In those embodiments, a first polarization information set sent by a transmitting device can be received by the receiving device. The first polarization information set includes at least one piece of first polarization information. A quality set comprising at least one quality of a received signal can be determined by the receiving device. The first polarization information corresponds to a quality of the received signal in the quality set, and the received signal is sent by the transmitting device to the receiving device through a non-line-of-sight channel. An optimal quality in the quality set can be determined by the receiving device. The optimal quality has a minimum degradation degree of the received signal in the quality set. The receiving device can then send the first polarization information corresponding to the optimal quality to the transmitting device.
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公开(公告)号:US10826189B2
公开(公告)日:2020-11-03
申请号:US16232053
申请日:2018-12-26
Applicant: HUAWEI TECHNOLOGIES CO., LTD.
Abstract: Embodiments provide a frequency selective surface (FSS). The FSS includes uniformly arranged FSS units. Each FSS unit includes a dielectric slab, a cross-shaped metal patch, and N square-ring metal patches. The cross-shaped metal patch is adhered to a first surface of the dielectric slab, and divides the first surface of the dielectric slab into four parts. Each part has a same size and a same quantity of the square-ring metal patches. The N square-ring metal patches are adhered to the first surface of the dielectric slab, and are arranged uniformly, and N is a positive integer power of 4. Lengths of the cross-shaped metal patch in two mutually perpendicular directions are equal, and both a length in each direction and a width of a gap between adjacent patches need to meet a specific condition.
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公开(公告)号:US20170040703A1
公开(公告)日:2017-02-09
申请号:US15299726
申请日:2016-10-21
Applicant: Huawei Technologies Co., Ltd.
Inventor: Yujian Cheng , Yi Chen
Abstract: Embodiments of the present invention provide a multi-polarization substrate integrated waveguide antenna. In the multi-polarization substrate integrated waveguide antenna of the present invention, the antenna is of a multi-layer structure and includes a first metal copper clad layer, a first dielectric layer, a second metal copper, clad layer, a second dielectric layer, and a third metal copper clad layer successively from top to bottom, where plated through holes are provided on both the first dielectric layer and the second dielectric layer, and etching grooves are provided on both the first metal copper clad layer and the second metal copper clad layer. The embodiments of the present invention resolve a problem that feeding efficiency is reduced in a high frequency application when a microstrip is used to feed electricity.
Abstract translation: 本发明的实施例提供了一种多极化基板集成波导天线。 在本发明的多极化基板集成波导天线中,天线为多层结构,包括第一金属铜包层,第一电介质层,第二金属铜,包覆层,第二电介质层, 和第三金属铜包覆层,从第一金属铜包覆层和第二金属铜包覆层两者分别设置在第一电介质层和第二电介质层上的电镀通孔, 层。 本发明的实施例解决了当使用微带馈电时在高频应用中馈电效率降低的问题。
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公开(公告)号:US20160380362A1
公开(公告)日:2016-12-29
申请号:US15261006
申请日:2016-09-09
Applicant: HUAWEI TECHNOLOGIES CO., LTD.
Inventor: Yujian Cheng , Yi Chen
IPC: H01Q21/06
CPC classification number: H01Q21/065 , H01Q21/0006 , H01Q21/0087 , H01Q21/0093 , H01Q21/062
Abstract: An array antenna includes a first metal layer, a first dielectric layer, a second metal layer, a second dielectric layer, and a third metal layer that are sequentially laminated, where multiple metal through holes are disposed on the second dielectric layer, the multiple metal through holes form a feeding section, the first metal layer includes multiple subarrays, each subarray includes multiple radiating arrays and one power splitter, the power splitter includes a central area and multiple branches extending from the central area, the multiple radiating arrays are respectively connected to ends of the multiple braches that are far from the central area, multiple coupling slots are disposed on the second metal layer, the multiple coupling slots respectively face central areas, the feeding section is used to feed a signal.
Abstract translation: 阵列天线包括依次层叠的第一金属层,第一介电层,第二金属层,第二介电层和第三金属层,其中多个金属通孔设置在第二介电层上,多金属 通孔形成馈电部分,第一金属层包括多个子阵列,每个子阵列包括多个辐射阵列和一个功率分配器,功率分配器包括中心区域和从中心区域延伸的多个分支,多个辐射阵列分别连接到 远离中心区域的多个支架的端部,多个耦合槽布置在第二金属层上,多个耦合槽分别面对中心区域,馈电部分用于馈送信号。
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公开(公告)号:US11791551B2
公开(公告)日:2023-10-17
申请号:US17318646
申请日:2021-05-12
Applicant: HUAWEI TECHNOLOGIES CO., LTD.
Inventor: Shuguang Xiao , Jie Zhao , Xiao Zhou , Xin Luo , Yi Chen
CPC classification number: H01Q1/525 , H01Q5/48 , H01Q7/00 , H01Q9/0485 , H04B1/525
Abstract: This application provides an antenna system and a wireless device, and pertains to the field of communications technologies. In this application, a decoupling resonator is connected to a first antenna, and a resonance frequency of the decoupling resonator is within an operating frequency band of a second antenna, so that the decoupling resonator can resonate within the operating frequency band of the second antenna. The decoupling resonator reduces coupling between the first antenna and the second antenna, and isolation between the first antenna and the second antenna is improved.
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公开(公告)号:US20220158344A1
公开(公告)日:2022-05-19
申请号:US17526594
申请日:2021-11-15
Applicant: Huawei Technologies Co., Ltd.
Inventor: Qian Zhang , Min Yu , Xin Luo , Yi Chen
Abstract: A reconfigurable antenna includes a first antenna and a second antenna. The first antenna is an omnidirectional antenna, and the second antenna surrounds the first antenna. The second antenna includes a plurality of antenna element groups. Each antenna element group includes a transmission cable, a switch, a first antenna element, and a second antenna element. The transmission cable is connected to the first antenna element and the second antenna element. The transmission cable is connected to a feedpoint. The switch is connected to a first point and a second point on the transmission cable. A sum of a length of antennas and transmission cables in an antenna element group is slightly greater than ½ wavelength (λ1), where λ1 is a wavelength of an electromagnetic wave on an operating frequency of the first antenna.
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公开(公告)号:US10003657B2
公开(公告)日:2018-06-19
申请号:US15056251
申请日:2016-02-29
Applicant: Huawei Technologies Co., Ltd.
CPC classification number: H04L67/141 , H04W4/70 , H04W76/00
Abstract: A data transmission processing method and apparatus, where the method includes receiving, by a common services entity (CSE), a first request message that is sent by an application function (AF) and used to instruct the CSE to update a first underlying network information resource, where the first request message includes data for calling an underlying network service, and the first underlying network information resource is a resource specially used to store the data for calling an underlying network service, updating, by the CSE, original data in the first underlying network information resource to the data for calling an underlying network service, and sending, by the CSE, the data for calling an underlying network service in the first underlying network information resource to an underlying network using a control plane.
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公开(公告)号:US20230155302A1
公开(公告)日:2023-05-18
申请号:US17989244
申请日:2022-11-17
Applicant: Huawei Technologies Co., Ltd.
Inventor: Min Yu , Michael Kadichevitz , Yi Chen
CPC classification number: H01Q21/205 , H01Q1/246 , H01Q15/14
Abstract: An antenna and an electronic device are provided. The antenna includes: a radiating element pair, including a first radiating element and a second radiating element that are arranged in an annular array, where the first radiating element and the second radiating element are symmetrically arranged with respect to a symmetry line, the symmetry line passes through a center point of the annular array, and the first radiating element or the second radiating element is in an arc shape centered on the center point, or extends in a tangent direction of an arc shape centered on the center point; and a feed structure, including a first feed part and a second feed part, where the first feed part is coupled to the first radiating element, and the second feed part is coupled to the second radiating element.
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公开(公告)号:US20220368037A1
公开(公告)日:2022-11-17
申请号:US17879090
申请日:2022-08-02
Applicant: Huawei Technologies Co., Ltd.
Abstract: A multibeam antenna including a substrate, and further includes an antenna element, a first guiding apparatus, and a second guiding apparatus disposed on the substrate. The antenna element includes a first pole configured to receive a feeding signal and a second pole that is grounded. The first guiding apparatus enables a first beam generated by the antenna element to radiate in a first direction, and the second guiding apparatus enables a second beam generated by the antenna element to radiate in a second direction. A phase center of the antenna element is at an intersecting point of a first axis and a second axis, the first axis passing through a phase center of the first guiding apparatus and parallel to the first direction, and the second axis passing through a phase center of the second guiding apparatus and parallel to the second direction.
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