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公开(公告)号:US09967040B2
公开(公告)日:2018-05-08
申请号:US15676611
申请日:2017-08-14
Applicant: Intel Corporation
Inventor: Aleksandar Aleksov , Sasha N. Oster , Feras Eid , Adel A. Elsherbini , Johanna M. Swan , Amit Sudhir Baxi , Vincent S. Mageshkumar , Kumar Ranganathan , Wen-Ling M. Huang
IPC: H04B13/00 , A61B5/021 , A61B5/11 , A61B5/01 , A61B5/00 , A61B5/0402 , A61B5/145 , A61N7/00 , A61M5/142 , A61N1/04 , H04B5/00
CPC classification number: H04B13/005 , A61B5/0024 , A61B5/01 , A61B5/0205 , A61B5/021 , A61B5/0402 , A61B5/0432 , A61B5/1102 , A61B5/1107 , A61B5/1121 , A61B5/14532 , A61B5/14546 , A61B5/4839 , A61B5/4869 , A61B5/6833 , A61F7/007 , A61M5/14248 , A61N1/0484 , A61N1/0492 , A61N1/3603 , A61N7/00 , H04B5/0012
Abstract: Discussed generally herein are methods and devices including or providing a patch system that can help in diagnosing a medical condition and/or provide therapy to a user. A body-area network can include a plurality of communicatively coupled patches that communicate with an intermediate device. The intermediate device can provide data representative of a biological parameter monitored by the patches to proper personnel, such as for diagnosis and/or response.
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公开(公告)号:US10667690B2
公开(公告)日:2020-06-02
申请号:US15089501
申请日:2016-04-02
Applicant: Intel Corporation
Inventor: Venkat Natarajan , Deeksha Dadhich , Kumar Ranganathan
IPC: A61B5/1455 , A61B5/00
Abstract: A photoplethysmogram (PPG) measurement includes the use of compressive sensing based on samples generated in accordance with a fixed pattern. A pulse oximeter circuit can drive an LED according to the fixed pattern to create a compressive sensing sample matrix of sparse measurements. The fixed pattern can be a binary progression. The PPG signal reconstruction can include zero padding the sample matrix.
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公开(公告)号:US10448415B2
公开(公告)日:2019-10-15
申请号:US15646504
申请日:2017-07-11
Applicant: INTEL CORPORATION
Inventor: Venkataraman Natarajan , Apoorv Vyas , Jaroslaw J. Sydir , Kumar Ranganathan
Abstract: Techniques disclosed for accurately predicting the occurrence of anomalous sensor readings within a sensor network and advantageously using these predictions to limit the amount of power used by relay nodes within the sensor network. Some examples analyze spatial and temporal characteristics of anomalous sensor readings to predict future occurrences. In these examples, the relay nodes operate in a reduced power mode for periods of time in which anomalous sensor readings are not predicted to occur. Also, in these examples, only relay nodes in a path between a sensor predicting an anomalous reading and a gateway of the sensor network operate in full power mode. This feature allows other relay nodes to remain in the reduced power mode even when an anomalous sensor reading is predicted elsewhere in the sensor network.
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公开(公告)号:US10799118B2
公开(公告)日:2020-10-13
申请号:US15553547
申请日:2016-02-16
Applicant: Intel Corporation
Inventor: Jaskaran S. Grover , Venkat Natarajan , Kumar Ranganathan
Abstract: In one example an input/output interface to receive motion tracking data from at least one remote motion sensing device and a controller coupled to the input/output interface and comprising logic, at least partially including hardware logic, to receive the motion tracking data, generate estimated position data using the motion tracking data; and present the estimated position data on a display device coupled to the electronic device. Other examples may be described.
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公开(公告)号:US20190036545A1
公开(公告)日:2019-01-31
申请号:US15741497
申请日:2016-06-01
Applicant: INTEL CORPORATION
Inventor: Venkat NATARAJAN , Niita Pendekanti , Kumar Ranganathan
Abstract: Described is an apparatus and method for data compression using compressive sensing in a wearable device. Described is also a machine-readable storage media having instruction stored thereon, that when executed, cause one or more processors to perform an operation comprising: receive an input signal from a sensor; convert the input signal to a digital stream; and symmetrically pad on either ends of the digital stream with a portion of the digital stream to form a padded digital stream.
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16.
公开(公告)号:US20160157779A1
公开(公告)日:2016-06-09
申请号:US14563801
申请日:2014-12-08
Applicant: Intel Corporation
Inventor: Amit S. Baxi , Vincent S. Mageshkumar , Kumar Ranganathan
IPC: A61B5/00 , A61B5/1477 , A61B5/11 , A61B5/0492 , A61B5/0408 , A61B5/0205
CPC classification number: A61B5/6831 , A61B5/0024 , A61B5/02055 , A61B5/04085 , A61B5/0492 , A61B5/0533 , A61B5/1477 , A61B5/4266 , A61B5/6822 , A61B5/6823 , A61B5/6824 , A61B5/6828 , A61B5/6829 , A61B2562/0247 , A61B2562/0261 , A61B2562/164 , A61B2562/227
Abstract: Embodiments of the present disclosure provide techniques and configurations for a wearable sensor apparatus. In one instance, the apparatus may comprise a first flexible substrate, including a first plurality of sensors disposed on a first side of the first flexible substrate to be in direct contact with a user's body, and a first set of conductive connectors disposed on a second side of the first flexible substrate; and a second flexible substrate that includes a second set of conductive connectors disposed on a first side of the second flexible substrate compatibly to the first set of conductive connectors to mechanically and electrically couple the second flexible substrate with the first flexible substrate, and circuitry disposed on a second side of the second flexible substrate to receive and process readings provided by the sensors via the first and second sets of conductive connectors. Other embodiments may be described and/or claimed.
Abstract translation: 本公开的实施例提供了用于可穿戴式传感器装置的技术和构造。 在一种情况下,该装置可以包括第一柔性基板,包括设置在第一柔性基板的第一侧上以与使用者的主体直接接触的第一多个传感器,以及设置在第二柔性基板上的第一组导电连接器 一侧的第一柔性基板; 以及第二柔性基板,其包括第二组导电连接器,所述第二组导电连接器设置在所述第二柔性基板的第一侧上,与所述第一组导电连接器兼容,以将所述第二柔性基板与所述第一柔性基板机械地和电耦合, 第二柔性基板的第二侧,用于接收和处理由传感器经由第一和第二组导电连接器提供的读数。 可以描述和/或要求保护其他实施例。
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