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公开(公告)号:US10539650B2
公开(公告)日:2020-01-21
申请号:US15523717
申请日:2016-10-17
发明人: Yincheng Zhong , Guanjiao Ren , Xuhui Wang , Li Pu
IPC分类号: G01S5/02 , H01Q3/10 , G01S5/06 , H01Q3/02 , H04B7/04 , G01S3/12 , G01S3/42 , G01S3/48 , G01S5/12
摘要: An antenna control method, communications positioning apparatus and computer storage medium is provided. The method is used in a communications positioning apparatus. The communications positioning apparatus comprises a communications antenna and a rotation device. The communications antenna comprises at least two antennas. The rotation device drives the communications antenna to rotate, wherein the method comprises: acquiring a first command, wherein the first command turns on a positioning mode; in response to the first command, acquiring angle information corresponding to the communications antenna and a beacon; in accordance with the angle information, determining corresponding rotation parameters of the rotation device, wherein the rotation parameters comprise at least a rotation direction and a rotation angle; and in accordance with the rotation parameters, controlling the rotation device to drive the rotation direction and rotation angle corresponding to the communications antenna.
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公开(公告)号:US20180331721A1
公开(公告)日:2018-11-15
申请号:US15592610
申请日:2017-05-11
发明人: ALDO ADRIAZOLA , MITCHELL HARVEY FUCHS , ROBERT BENNETT , BRANDON PIMM , FARHAD BARZEGAR , PAUL SHALA HENRY , IRWIN GERSZBERG , THOMAS M. WILLIS, III , DONALD J. BARNICKEL , ROBERT ROMAN
CPC分类号: H04B3/54 , H01Q1/12 , H01Q1/1228 , H01Q3/08 , H01Q3/10 , H01Q3/26 , H01Q13/24 , H01Q19/08 , H01Q21/067 , H01Q21/205 , H04B3/04 , H04B3/52 , H04B3/56 , H04B3/58 , H04B2203/5425 , H04B2203/5441 , H04B2203/5445 , H04B2203/5466
摘要: Aspects of the subject disclosure may include, a communication device with a support structure having first and second annular contacts formed on an outer surface thereof, a first radio device having a first inner surface of a first housing opening with a third contact, and a second radio device having a second inner surface of a second housing opening with a fourth contact. The support structure is positioned in and passes through the first and second housing openings thereby positioning the first and second radio devices in a stacked arrangement, and, when in the stacked arrangement, the first and third contacts are aligned and the second and fourth contact are aligned to provide a coupling between the first and second radio devices. Other embodiments are disclosed.
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公开(公告)号:US20180267136A1
公开(公告)日:2018-09-20
申请号:US15523717
申请日:2016-10-17
发明人: Yincheng Zhong , Cuanjiao Ren , Xuhui Wang , Li Pu
CPC分类号: G01S5/06 , G01S3/12 , G01S3/42 , G01S3/48 , G01S5/0221 , G01S5/12 , H01Q3/02 , H01Q3/10 , H04B7/04
摘要: An antenna control method, communications positioning apparatus and computer storage medium is provided. The method is used in a communications positioning apparatus. The communications positioning apparatus comprises a communications antenna and a rotation device. The communications antenna comprises at least two antennas. The rotation device drives the communications antenna to rotate, wherein the method comprises: acquiring a first command, wherein the first command turns on a positioning mode; in response to the first command, acquiring angle information corresponding to the communications antenna and a beacon; in accordance with the angle information, determining corresponding rotation parameters of the rotation device, wherein the rotation parameters comprise at least a rotation direction and a rotation angle; and in accordance with the rotation parameters, controlling the rotation device to drive the rotation direction and rotation angle corresponding to the communications antenna.
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公开(公告)号:US20180254554A1
公开(公告)日:2018-09-06
申请号:US14447015
申请日:2014-07-30
CPC分类号: H01Q1/1257 , H01Q1/1264 , H01Q3/08
摘要: A portable antenna system including a reflector with a center axis, a feed at the center axis of the reflector, a post with a rotatable bracket on the post. The system also includes a skew drive mounted to the bracket and having a first output coupled to the reflector at the center axis thereof to adjust the skew angle of the reflector, an elevation motor configured to rotate the rotatable bracket to vary the elevation of the reflector, and an azimuth motor configured to rotate the post to vary the azimuth of the reflector.
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公开(公告)号:US20180213417A1
公开(公告)日:2018-07-26
申请号:US15927880
申请日:2018-03-21
IPC分类号: H04W24/02 , H05K7/20 , H01Q25/00 , F16M11/06 , G01S3/04 , G01S3/14 , G01S5/02 , H04W88/04 , H04W72/08 , H04W72/04 , H04W48/06 , H04W40/22 , H04W28/24 , H04W28/02 , H04W24/10 , H04W24/08 , H04W16/28 , H04L29/08 , H04L12/26 , H04L12/24 , H04B7/08 , H04B7/06 , H04B7/0456 , H04W4/50 , H01Q21/28 , H01Q21/24 , H01Q21/20 , H01Q21/08 , H01Q21/06 , H01Q21/00 , H01Q3/36 , H01Q3/26 , H01Q3/24 , H01Q3/12 , H01Q3/10 , H01Q3/04 , H01Q3/02 , H01Q1/50 , H01Q1/42 , H01Q1/36 , H01Q1/24 , H01Q1/12 , H01Q1/02 , G01S19/53 , G01S19/24 , H04W84/02 , H04W84/04 , H04W88/08
CPC分类号: H04W24/02 , F16M11/06 , G01S3/043 , G01S3/14 , G01S5/0247 , G01S19/24 , G01S19/53 , H01Q1/02 , H01Q1/1207 , H01Q1/1228 , H01Q1/1257 , H01Q1/246 , H01Q1/36 , H01Q1/42 , H01Q1/50 , H01Q3/02 , H01Q3/04 , H01Q3/10 , H01Q3/12 , H01Q3/24 , H01Q3/26 , H01Q3/2611 , H01Q3/36 , H01Q21/00 , H01Q21/065 , H01Q21/08 , H01Q21/205 , H01Q21/24 , H01Q21/28 , H01Q25/002 , H01Q25/005 , H04B7/0456 , H04B7/0617 , H04B7/0621 , H04B7/0691 , H04B7/0695 , H04B7/0817 , H04B7/086 , H04B7/0874 , H04B7/088 , H04L41/0806 , H04L41/0816 , H04L43/0829 , H04L67/18 , H04L67/34 , H04W4/50 , H04W16/28 , H04W24/08 , H04W24/10 , H04W28/0236 , H04W28/0268 , H04W28/0284 , H04W28/24 , H04W40/22 , H04W48/06 , H04W72/042 , H04W72/085 , H04W84/02 , H04W84/045 , H04W88/04 , H04W88/08 , H05K7/20
摘要: An antenna apparatus for use in a wireless network and method of operating such an antenna apparatus are provided. A wireless network controller provides a configuration of such an antenna apparatus, a method of operating such a wireless network controller, and a resulting wireless network. The antenna apparatus comprises a directional antenna and a uniform circular antenna array. The directional antenna can be rotatably positioned about an axis with respect to a fixed mounting portion of the apparatus in dependence on wireless signals received by the antenna array. The antenna array allows the antenna apparatus to receive wireless signals isotropically and thus to accurately monitor the wireless signal environment in which it finds itself. The antenna apparatus can thus monitor and characterise incoming signals, both from external interference sources and from other network nodes, and the directional antenna can then be positioned in rotation to improve the network throughput.
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公开(公告)号:US09960830B2
公开(公告)日:2018-05-01
申请号:US15477567
申请日:2017-04-03
发明人: Hyunil Yoo , Jaewon Kim , Jeehwan Noh , Hyunseok Ryu , Hyukmin Son , Hyunkyu Yu
IPC分类号: H04B1/18 , H04B7/06 , H01Q3/10 , H01Q3/30 , H04L29/08 , H04W16/28 , H04W72/04 , H04W72/08 , H04W84/18
CPC分类号: H04B7/0695 , H01Q3/10 , H01Q3/30 , H01Q3/40 , H04B7/0628 , H04B7/063 , H04L29/08315 , H04W4/00 , H04W4/70 , H04W16/28 , H04W72/046 , H04W72/085 , H04W84/18
摘要: A pre-5th-generation (5G) or 5G communication system for supporting higher data rates Beyond 4th-generation (4G) communication system such as long term evolution (LTE) is provided. In a beam update method of a terminal, measuring a beam reference signal (BRS) transmitted from a base station, determining whether a beam measurement information transmission condition is satisfied, if the beam measurement information transmission condition is satisfied, transmitting beam measurement information to the base station, receiving information about a base station transmitting beam from the base station, and updating information about a terminal receiving beam based on the received information about the base station transmitting beam.
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77.
公开(公告)号:US09924385B2
公开(公告)日:2018-03-20
申请号:US15182209
申请日:2016-06-14
IPC分类号: H04M1/00 , H04W24/02 , F16M11/06 , G01S3/04 , G01S3/14 , G01S5/02 , G01S19/24 , G01S19/53 , H01Q1/02 , H01Q1/12 , H01Q1/24 , H01Q1/36 , H01Q1/42 , H01Q1/50 , H01Q3/02 , H01Q3/04 , H01Q3/10 , H01Q3/12 , H01Q3/24 , H01Q3/36 , H01Q21/00 , H01Q21/06 , H01Q21/08 , H01Q21/20 , H01Q21/24 , H01Q21/28 , H01Q25/00 , H04B7/0456 , H04B7/06 , H04L12/24 , H04L12/26 , H04L29/08 , H04W4/00 , H04W16/28 , H04W24/08 , H04W24/10 , H04W28/02 , H04W28/24 , H04W40/22 , H04W48/06 , H04W72/04 , H04W72/08 , H04W88/04 , H05K7/20 , H01Q3/26 , H04B7/08 , H04W84/02 , H04W84/04 , H04W88/08
CPC分类号: H04W24/02 , F16M11/06 , G01S3/043 , G01S3/14 , G01S5/0247 , G01S19/24 , G01S19/53 , H01Q1/02 , H01Q1/1207 , H01Q1/1228 , H01Q1/1257 , H01Q1/246 , H01Q1/36 , H01Q1/42 , H01Q1/50 , H01Q3/02 , H01Q3/04 , H01Q3/10 , H01Q3/12 , H01Q3/24 , H01Q3/26 , H01Q3/2611 , H01Q3/36 , H01Q21/00 , H01Q21/065 , H01Q21/08 , H01Q21/205 , H01Q21/24 , H01Q21/28 , H01Q25/002 , H01Q25/005 , H04B7/0456 , H04B7/0617 , H04B7/0621 , H04B7/0691 , H04B7/0695 , H04B7/0817 , H04B7/086 , H04B7/0874 , H04B7/088 , H04L41/0806 , H04L41/0816 , H04L43/0829 , H04L67/18 , H04L67/34 , H04W4/50 , H04W16/28 , H04W24/08 , H04W24/10 , H04W28/0236 , H04W28/0268 , H04W28/0284 , H04W28/24 , H04W40/22 , H04W48/06 , H04W72/042 , H04W72/085 , H04W84/02 , H04W84/045 , H04W88/04 , H04W88/08 , H05K7/20
摘要: An antenna apparatus operates as a base station in a wireless network, with a method configuring a transmission beam within such antenna apparatus. The antenna apparatus has a rotatable antenna assembly employing selected transmission beam patterns, and a controller to rotate the antenna assembly altering its azimuth direction. During configuration mode, a sweep operation rotates the antenna assembly to selected azimuth directions. Quality metric determination circuitry determines, for each selected azimuth direction, a link quality metric for wireless terminals based on communication between the wireless terminals and the base station whilst the rotatable antenna assembly is at that selected azimuth direction. Transmission beam determination circuitry determines, from the link quality metrics determined for the wireless terminals at each selected azimuth direction, both a transmission beam pattern and an azimuth direction for subsequent communication with the wireless terminals. The antenna apparatus efficiently self-configures its transmission beam pattern and azimuth direction.
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公开(公告)号:US20170288763A1
公开(公告)日:2017-10-05
申请号:US15477567
申请日:2017-04-03
发明人: Hyunil YOO , Jaewon KIM , Jeehwan NOH , Hyunseok RYU , Hyukmin SON , Hyunkyu YU
CPC分类号: H04B7/0695 , H01Q3/10 , H01Q3/30 , H01Q3/40 , H04B7/0628 , H04B7/063 , H04L29/08315 , H04W4/00 , H04W4/70 , H04W16/28 , H04W72/046 , H04W72/085 , H04W84/18
摘要: A pre-5th-generation (5G) or 5G communication system for supporting higher data rates Beyond 4th-generation (4G) communication system such as long term evolution (LTE) is provided. In a beam update method of a terminal, measuring a beam reference signal (BRS) transmitted from a base station, determining whether a beam measurement information transmission condition is satisfied, if the beam measurement information transmission condition is satisfied, transmitting beam measurement information to the base station, receiving information about a base station transmitting beam from the base station, and updating information about a terminal receiving beam based on the received information about the base station transmitting beam.
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公开(公告)号:US6160521A
公开(公告)日:2000-12-12
申请号:US397035
申请日:1999-09-16
摘要: A tracking device comprises a cam-driven actuator arm by which the declination of an earth station dish is caused to vertically oscillate with a sidereal day cycle. In a second embodiment, the tracker comprises a constant velocity joint interposed between the satellite dish and the elevation frame of the antenna mounting structure. The rotation of the constant velocity joint over a sidereal day cycle will result in tracking of the figure eight path.
摘要翻译: 跟踪装置包括凸轮驱动的致动器臂,通过该凸轮驱动致动臂使地球站盘的偏角以恒星周期垂直摆动。 在第二实施例中,跟踪器包括插入卫星天线和天线安装结构的仰角框架之间的恒速接头。 恒星接头在恒星周期的旋转将导致跟踪图8路径。
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80.
公开(公告)号:US6057799A
公开(公告)日:2000-05-02
申请号:US249136
申请日:1999-02-12
CPC分类号: H01Q1/288 , G01K11/006 , H01Q21/064 , H01Q3/10
摘要: The invention concerns an interferometric hyperfrequency radiometry system comprising an antenna being subject to a rotation movement around the vertical direction, with a boresight axis forming an angle with a nadir direction so as to obtain a conical scanning. The antenna is a planar array antenna, of an interferometric type with distributed elements, such that the instantaneous field of vision consists of pixels, along at least one axis perpendicular to the conical scanning for an unidimensional interferometric antenna, and along two axes for a bidimensional interferometric antenna. The elements of the interferometric antenna furthermore are connected into sub-arrays.
摘要翻译: 本发明涉及一种干涉式超频辐射测量系统,其包括天线围绕垂直方向进行旋转运动,其中视轴与最低方向形成一角度以获得圆锥扫描。 天线是具有分布元件的干涉型平面阵列天线,使得瞬时视场由垂直于单维干涉天线的圆锥扫描的至少一个轴线的像素组成,并且沿着两个轴用于二维 干涉天线。 干涉天线的元件还连接到子阵列中。
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