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公开(公告)号:US20150058625A1
公开(公告)日:2015-02-26
申请号:US14148342
申请日:2014-01-06
Applicant: QUALCOMM Incorporated
Inventor: Jubin Jose , Xinzhou Wu , Thomas J. Richardson
IPC: H04L9/32
CPC classification number: H04L9/3242 , H04L9/3236 , H04L9/3247 , H04L9/3268 , H04L63/0428 , H04L63/12 , H04L67/12 , H04L2209/24 , H04L2209/72 , H04L2209/80 , H04L2209/84 , H04W4/046 , H04W4/80
Abstract: Methods, systems, and devices are described for securing content for delivery via a communications network. The methods, systems and devices may involve coding a plurality of packets using a determined code to generate a coded set of packets. A plurality of packets of the coded set of packets may be hashed to generate a plurality of hashes. The plurality of hashes may be transmitted via the communications network to deliver the secured content.
Abstract translation: 描述了用于保护通过通信网络进行传送的内容的方法,系统和设备。 方法,系统和设备可以包括使用确定的代码对多个分组进行编码以生成编码的分组集合。 编码的分组集合的多个分组可以被散列以产生多个散列。 多个散列可以经由通信网络传送以传递安全的内容。
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公开(公告)号:US20140335884A1
公开(公告)日:2014-11-13
申请号:US13889089
申请日:2013-05-07
Applicant: QUALCOMM INCORPORATED
Inventor: Jubin Jose , Ying Wang , Junyi Li , Sundar Subramanian , Xinzhou Wu
IPC: H04W64/00
CPC classification number: H04W64/00 , G01S5/00 , G01S5/0263 , G01S19/11 , G01S19/48 , H04L1/00 , H04W72/00 , H04W88/06
Abstract: Methods, systems, and devices are described for using location information to determine whether to use at least a portion of a dedicated short range communications (DSRC) spectrum. Current location information of a multi-mode device is determined. The multi-mode device is operating outside of the DSRC spectrum. The current location information is used to determine whether the multi-mode device is located outside of geographical region attributed to DSRC transmissions. Upon determining that the multi-mode device is located outside of the geographical region, at least a portion of the DSRC spectrum is used for transmissions by the multi-mode device.
Abstract translation: 描述了使用位置信息来确定是否使用专用短距离通信(DSRC)频谱的至少一部分的方法,系统和设备。 确定多模式设备的当前位置信息。 多模式设备在DSRC频谱之外运行。 当前位置信息用于确定多模式设备是否位于归因于DSRC传输的地理区域之外。 在确定多模式设备位于地理区域之外时,DSRC频谱的至少一部分被用于多模式设备的传输。
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公开(公告)号:US12259464B2
公开(公告)日:2025-03-25
申请号:US17658619
申请日:2022-04-08
Applicant: QUALCOMM Incorporated
Inventor: Mandar Narsinh Kulkarni , Jubin Jose , Muryong Kim
IPC: G01S13/89 , G01S13/58 , G06F18/23 , G06F18/2433
Abstract: Creating and updating an accurate radar map layer for HD map using crowdsourcing may comprise a vehicle obtaining radar data and filtering the radar data on a frame-by-frame basis. In some embodiments, additional filtering may be made on a batch of frames. The vehicle can then transmit the filtered radar data responsive to a determination that a confidence of a position estimate of the vehicle exceeds a conference threshold level and/or a determination that a reliance of the position estimate of the vehicle on the radar data exceeds a reliance threshold level.
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公开(公告)号:US11849394B2
公开(公告)日:2023-12-19
申请号:US17741743
申请日:2022-05-11
Applicant: QUALCOMM Incorporated
Inventor: Chang-Sik Choi , Kapil Gulati , Sudhir Kumar Baghel , Urs Niesen , Jubin Jose , Anantharaman Balasubramanian
CPC classification number: H04W52/0229 , H04W4/023 , H04W4/027 , H04W4/46 , H04W48/10 , H04W56/001
Abstract: A user equipment (UE) in a vehicle (V-UE) broadcasts multi-phased ranging signals with which other entities may determine the range to the V-UE. The multi-phased ranging signals may include a first message, which may be broadcast in the Intelligent Transport System (ITS) spectrum, includes ranging information, such as a source identifier, location information for the broadcasting V-UE, and an expected time of broadcast of the ranging signal. The ranging signal may then be broadcast at the expected time and may include the source identifier. A second message, which be broadcast in the ITS spectrum, may include clock error information for the V-UE. A receiving entity may determine the range to the V-UE based on the time of arrival of the ranging signal and the expected time of transmission, as well as the clock error information. The receiving entity may further generate a position estimate based on the received location information.
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公开(公告)号:US11536856B2
公开(公告)日:2022-12-27
申请号:US17083516
申请日:2020-10-29
Applicant: QUALCOMM Incorporated
Inventor: Urs Niesen , Jubin Jose , Lei Zhang
IPC: G01S19/47 , G01S19/48 , H04B1/3827 , H04B1/3822 , G06T7/73 , G01C21/36 , H04N7/18 , G01C22/00 , G01S19/49
Abstract: Techniques provided herein are directed toward virtually extending an updated set of output positions of a mobile device determined by a VIO by combining a current set of VIO output positions with one or more previous sets of VIO output positions in such a way that ensure all outputs positions among the various combined sets of output positions are consistent. The combined sets can be used for accurate position determination of the mobile device. Moreover, the position determination further may be based on GNSS measurements.
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公开(公告)号:US20220272634A1
公开(公告)日:2022-08-25
申请号:US17741743
申请日:2022-05-11
Applicant: QUALCOMM Incorporated
Inventor: Chang-Sik CHOI , Kapil Gulati , Sudhir Kumar Baghel , Urs Niesen , Jubin Jose , Anantharaman Balasubramanian
Abstract: A user equipment (UE) in a vehicle (V-UE) broadcasts multi-phased ranging signals with which other entities may determine the range to the V-UE. The multi-phased ranging signals may include a first message, which may be broadcast in the Intelligent Transport System (ITS) spectrum, includes ranging information, such as a source identifier, location information for the broadcasting V-UE, and an expected time of broadcast of the ranging signal. The ranging signal may then be broadcast at the expected time and may include the source identifier. A second message, which be broadcast in the ITS spectrum, may include clock error information for the V-UE. A receiving entity may determine the range to the V-UE based on the time of arrival of the ranging signal and the expected time of transmission, as well as the clock error information. The receiving entity may further generate a position estimate based on the received location information.
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公开(公告)号:US11363530B2
公开(公告)日:2022-06-14
申请号:US16992939
申请日:2020-08-13
Applicant: QUALCOMM Incorporated
Inventor: Chang-Sik Choi , Kapil Gulati , Sudhir Kumar Baghel , Urs Niesen , Jubin Jose , Anantharaman Balasubramanian
Abstract: A user equipment (UE) in a vehicle (V-UE) broadcasts multi-phased ranging signals with which other entities may determine the range to the V-UE. The multi-phased ranging signals may include a first message, which may be broadcast in the Intelligent Transport System (ITS) spectrum, includes ranging information, such as a source identifier, location information for the broadcasting V-UE, and an expected time of broadcast of the ranging signal. The ranging signal may then be broadcast at the expected time and may include the source identifier. A second message, which be broadcast in the ITS spectrum, may include clock error information for the V-UE. A receiving entity may determine the range to the V-UE based on the time of arrival of the ranging signal and the expected time of transmission, as well as the clock error information. The receiving entity may further generate a position estimate based on the received location information.
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公开(公告)号:US11187719B2
公开(公告)日:2021-11-30
申请号:US16242135
申请日:2019-01-08
Applicant: QUALCOMM Incorporated
Inventor: Libin Jiang , Urs Niesen , Jubin Jose
Abstract: Techniques provided herein are directed toward addressing these and other issues by providing robust means for initializing an accelerometer that can take place even while a vehicle is in motion. Specifically, linear acceleration and velocity data can be estimated from wheel speeds, and angular velocity can be estimated with a gyroscope. The vehicle's acceleration can then be computed from these estimates, and subtracted from a total acceleration measured by the accelerometer to determine gravitational acceleration, which can then be accounted for in subsequent measurements taken by the accelerometer. A vehicle velocity may also be determined based on the vehicle's estimated angular velocity and linear velocity. Embodiments may also employ techniques for translating measurements taken in one coordinate frame to another coordinate frame for estimate determination and/or outlier compensation.
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公开(公告)号:US10330792B2
公开(公告)日:2019-06-25
申请号:US15265685
申请日:2016-09-14
Applicant: QUALCOMM Incorporated
Inventor: Urs Niesen , Lionel Jacques Garin , Jubin Jose
Abstract: The disclosure generally relates to position sensors, and more particularly to repair of carrier-phase cycle slips using displacement data. An apparatus for use in position sensing may include a displacement sensor, a positioning signal receiver, a memory, and a processor coupled to the displacement sensor, the positioning signal receiver, and the memory. The processor and memory may be configured to processor and memory are configured to detect a loss of lock of a first carrier tracking loop associated with the first set of carrier-phase measurements, wherein the first carrier tracking loop is associated with a first integer ambiguity, estimate, based on the displacement data, an ambiguity increment to the first integer ambiguity subsequent to the detected loss of lock, and resolve a second integer ambiguity associated with the second set of positioning signals based on the first integer ambiguity and the estimated ambiguity increment.
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公开(公告)号:US10182088B2
公开(公告)日:2019-01-15
申请号:US14794557
申请日:2015-07-08
Applicant: QUALCOMM Incorporated
Inventor: Jubin Jose , Venkatesan Nallampatti Ekambaram , Xinzhou Wu , Hong Cheng , Shailesh Patil
Abstract: Methods, systems, and devices are described for utilization of an unlicensed radio frequency spectrum band for performing a ranging procedure. Performance of the ranging procedure may be triggered by a signal transmitted in a licensed radio frequency spectrum band. While conventional ranging in Long Term Evolution (LTE) communications, for example, using the licensed radio frequency spectrum band may be limited to a 10 MHz bandwidth, using the unlicensed radio frequency spectrum band for ranging may allow use of a wider bandwidth, such as 100 MHz or greater. Use of the wider bandwidth may result in more accurate ranging measurements (e.g., time-of-arrival estimation).
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