-
公开(公告)号:US20190037639A1
公开(公告)日:2019-01-31
申请号:US15859438
申请日:2017-12-30
Applicant: Intel Corporation
Inventor: Keith Nolan , Mark Kelly , Charlie Sheridan
CPC classification number: H04W88/04 , H04B7/155 , H04B7/15528 , H04B7/2606 , H04W8/005 , H04W8/14 , H04W76/12 , H04W84/18
Abstract: An Internet of Things (IoT) device includes a transceiver to transmit and receive data packets. The IoT device also includes a controller to alternate between upstream and downstream relaying of data packets via the transceiver.
-
公开(公告)号:US20190036841A1
公开(公告)日:2019-01-31
申请号:US15859448
申请日:2017-12-30
Applicant: INTEL CORPORATION
Inventor: Keith Nolan , John Brady , Mark Kelly , Charlie Sheridan
IPC: H04L12/911 , H04L29/08
Abstract: An IoT device Internet of Things (IoT) device including storage to store instructions and a processor to execute the stored instructions to prioritize data blocks of a data payload by dynamically assigning priority levels of the data blocks, and to transmit one or more of the data blocks based on the prioritizing.
-
公开(公告)号:US20180288158A1
公开(公告)日:2018-10-04
申请号:US15755945
申请日:2015-09-25
Applicant: Intel Corporation
Inventor: Keith W. Nolan , Mark Kelly
Abstract: One embodiment provides an apparatus. The apparatus includes a sensor module. The sensor module includes a sensor; and a sensor controller. The sensor controller is to enumerate the sensor to a sensor processing unit in response to being powered on. The enumerating includes communicating enumeration data to the sensor processing unit. The enumeration data includes one or more of a sensor name, a sensor manufacturer name, a sensor serial number, a hardware version, a firmware version, and/or one or more sensor characteristics. The sensor controller is further to monitor operation of the sensor and to provide sensor lifecycle information to the sensor processing unit over the lifecycle of the sensor.
-
公开(公告)号:US20170284902A1
公开(公告)日:2017-10-05
申请号:US15085545
申请日:2016-03-30
Applicant: Intel Corporation
Inventor: Keith Nolan , Mark Kelly
Abstract: A method and apparatus for monitoring the motion of an oscillating mechanical device using one or more internet of things (IoT) devices. An exemplary method for monitoring an oscillating mechanical device includes collecting motion data from an accelerometer attached to a moving part in the oscillating mechanical device. A power spectrum for the oscillating mechanical device is calculated from the motion data. A mask is applied over the power spectrum to determine if a device is having operational difficulties.
-
公开(公告)号:US20160275706A1
公开(公告)日:2016-09-22
申请号:US14664603
申请日:2015-03-20
Applicant: Intel Corporation
Inventor: Keith Nolan , Mark Kelly , Hugh M. Carr , Philip Wade , Charlie Sheridan , Brian L. McCarson
CPC classification number: G06T11/206 , G06T11/001 , G06T17/05 , G08B19/00
Abstract: In embodiments, apparatuses, methods and storage media (transitory and non-transitory) are described that receive a plurality of sensor data values and a plurality of location data values corresponding to the sensor data values, may generate interpolated data values for a surveyed area, and may generate an image corresponding to the surveyed area based at least in part on the sensor data values and the interpolated data values. Other embodiments may be described and/or claimed.
Abstract translation: 在实施例中,描述了接收多个传感器数据值和对应于传感器数据值的多个位置数据值的装置,方法和存储介质(暂时和非暂时的)可以生成被测区域的内插数据值, 并且可以至少部分地基于传感器数据值和内插数据值来生成与被测区域对应的图像。 可以描述和/或要求保护其他实施例。
-
公开(公告)号:US11916730B2
公开(公告)日:2024-02-27
申请号:US17702488
申请日:2022-03-23
Applicant: INTEL CORPORATION
Inventor: Keith Nolan , Mark Kelly , Michael Nolan , Davide Carboni , Cliodhna Ni Scanaill , Eugene Ryan , Richard Davies , John Brady
IPC: G06F13/00 , G06F16/182 , H04L9/08 , H04L9/32 , H04L41/0806 , H04L41/12 , H04L45/00 , H04L61/4505 , H04L61/5069 , H04L67/10 , H04L67/104 , H04L67/1087 , H04L67/12 , H04L67/562 , H04L69/18 , H04L69/22 , H04W4/08 , H04W4/70 , H04W12/69 , H04W84/22 , H04L9/00 , H04W84/18
CPC classification number: H04L41/0806 , G06F16/1824 , G06F16/1834 , H04L9/0825 , H04L9/3239 , H04L41/12 , H04L45/20 , H04L61/4505 , H04L61/5069 , H04L67/10 , H04L67/104 , H04L67/1046 , H04L67/1093 , H04L67/12 , H04L67/562 , H04L69/18 , H04L69/22 , H04W4/08 , H04W4/70 , H04W12/69 , H04W84/22 , H04L9/50 , H04L2209/56 , H04W84/18
Abstract: An Internet of Things (IoT) network includes an orchestrator to issue service management requests, a service coordinator to identify components to participate in the service, and a component to perform a network service element. An IoT network includes an IoT device with service enumerator, contract enumerator, and join contract function. An IoT network apparatus includes permissions guide drafter for discovered peers, and permissions guide action executor. An IoT network apparatus includes floating service permissions guide drafter for discovered hosts, host hardware selector, floating service permissions guide executor, and service wallet value transferor. An IoT network apparatus includes permissions guide drafter for first and second discovered peers, parameter weight calculator, permissions guide term generator, and permissions guide action executor. An IoT network includes an IoT device with resource hardware component identifier, processor to process a received indication of an external module hardware requirement, an external module comparer, and deactivation signal transmitter.
-
公开(公告)号:US11770296B2
公开(公告)日:2023-09-26
申请号:US17713139
申请日:2022-04-04
Applicant: Intel Corporation
Inventor: Keith Nolan , Mark Kelly , Michael Nolan , Davide Carboni , John Brady , Niall Cahill , Ned M. Smith , Gregory Burns
IPC: H04L41/0806 , G06F16/182 , H04L9/08 , H04L9/32 , H04L41/12 , H04L45/00 , H04L61/4505 , H04L61/5069 , H04L67/10 , H04L67/104 , H04L67/1087 , H04L67/12 , H04L67/562 , H04W4/70 , H04L69/18 , H04W4/08 , H04W84/22 , H04L69/22 , H04W12/69 , H04W84/18 , H04L9/00
CPC classification number: H04L41/0806 , G06F16/1824 , G06F16/1834 , H04L9/0825 , H04L9/3239 , H04L41/12 , H04L45/20 , H04L61/4505 , H04L61/5069 , H04L67/10 , H04L67/104 , H04L67/1046 , H04L67/1093 , H04L67/12 , H04L67/562 , H04L69/18 , H04L69/22 , H04W4/08 , H04W4/70 , H04W12/69 , H04W84/22 , H04L9/50 , H04L2209/56 , H04W84/18
Abstract: Methods, apparatus, and articles of manufacture for decentralized data storage and processing for IoT devices are disclosed. An example apparatus includes memory; and a processor to cause storage of a contract in an off-chain datastore; generate a hash value of the contract; cause storage of the hash value on a blockchain to be accessible to multiple nodes in an IoT network; and cause storage of a transaction on the blockchain, the transaction corresponding to an objective of the contract based on data sensed by an IoT device in the IoT network.
-
公开(公告)号:US11706089B2
公开(公告)日:2023-07-18
申请号:US17396354
申请日:2021-08-06
Applicant: Intel Corporation
Inventor: Shao-Wen Yang , Michael J. Nolan , Ignacio J. Alvarez Martinez , Robert Adams , John Brady , Mark Kelly , Yen-Kuang Chen
IPC: H04L41/084 , H04W4/70 , H04L41/0866 , G06N20/00 , H04L67/12 , H04L69/40 , H04W8/00 , H04L65/40
CPC classification number: H04L41/084 , G06N20/00 , H04L41/0866 , H04L65/40 , H04L67/12 , H04L69/40 , H04W4/70 , H04W8/005
Abstract: Data is received describing a local model of a first device generated by the first device based on sensor readings at the first device and a global model is updated that is hosted remote from the first device based on the local model and modeling devices in a plurality of different asset taxonomies. A particular operating state affecting one or more of a set of devices deployed in a particular machine-to-machine network is detected and the particular machine-to-machine network is automatically reconfigured based on the global model.
-
公开(公告)号:US11637771B2
公开(公告)日:2023-04-25
申请号:US17578191
申请日:2022-01-18
Applicant: Intel Corporation
Inventor: Keith Nolan , Mark Kelly , Michael McGrath , Heather King , Charlie Sheridan
IPC: H04L45/42 , H04L45/122 , H04L9/40 , H04L67/12 , H04L45/50 , H04L45/00 , H04L45/302
Abstract: Technologies for managing network traffic through heterogeneous fog network segments of a fog network include a fog node deployed in a fog network segment. The fog node is configured to receive a fog frame that includes control instructions. The fog node is further configured to perform a route selection action to identify a preferred target fog node based on the control instructions, perform action(s) based on the control instructions and network characteristic(s) of the fog network segment relative to corresponding network characteristic(s) of the different fog network segment, and generate updated control instructions based on at least one network characteristic of the different fog network segment. Additionally, the fog node is configured to replace the original control instructions of the received fog frame with the updated control instructions and transmit the received fog frame with the updated control instructions to the preferred target fog node. Other embodiments are described and claimed.
-
公开(公告)号:US20230110131A1
公开(公告)日:2023-04-13
申请号:US17898227
申请日:2022-08-29
Applicant: INTEL CORPORATION
Inventor: Ned M. Smith , Keith Nolan , Mark Kelly , Gregory Burns , Michael Nolan , John Brady , Cliodhna Ni Scanaill , Niall Cahill , Thiago Macieira , Zheng Zhang , Glen J. Anderson , Igor Muttik , Davide Carboni , Eugene Ryan , Richard Davies , Toby M. Kohlenberg , Maarten Koning , Jakub Wenus , Rajesh Poornachandran , William C. Deleeuw , Ravikiran Chukka
IPC: H04L41/0806 , H04L67/10 , H04L67/12 , H04W4/70 , G06F16/182 , H04L9/08 , H04L9/32 , H04L45/00 , H04L67/104 , H04L69/18 , H04W4/08 , H04W84/22 , H04L41/12 , H04L69/22 , H04L67/1087 , H04W12/69 , H04L61/4505 , H04L61/5069 , H04L67/562
Abstract: The Internet can be configured to provide communications to a large number of Internet-of-Things (IoT) devices. Devices can be designed to address the need for network layers, from central servers, through gateways, down to edge devices, to grow unhindered, to discover and make accessible connected resources, and to support the ability to hide and compartmentalize connected resources. Network protocols can be part of the fabric supporting human accessible services that operate regardless of location, time, or space. Innovations can include service delivery and associated infrastructure, such as hardware and software. Services may be provided in accordance with specified Quality of Service (QoS) terms. The use of IoT devices and networks can be included in a heterogeneous network of connectivity including wired and wireless technologies.
-
-
-
-
-
-
-
-
-