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公开(公告)号:US20220103578A1
公开(公告)日:2022-03-31
申请号:US17097558
申请日:2020-11-13
Applicant: Honeywell International Inc.
Inventor: Amit SRIVASTAV , Rajesh CHENCHU , Nayyar Azam Khan RAO , Phani Ammi Raju POTHULA , Vijayshankaran IYER
Abstract: A method of monitoring network traffic of a connected vehicle. The method includes receiving network traffic information from a vehicle gateway, the network traffic information including malicious and/or benign information. The method also includes storing the network traffic information on a data server and periodically updating the network traffic information stored on the data server. The method further includes: pre-processing the network traffic information, the pre-processing the network traffic information including filtering and normalizing the network traffic information; generating a learning model based on the pre-processed network traffic information, the learning model being generated by an artificial intelligence learning; updating the learning model based on additional network traffic information, the additional network traffic information including real-time network data; in accordance with the updated learning model, detecting an anomaly event in the incoming network data; and generating a notification and/or blocking one or more packets associated with the incoming network data.
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公开(公告)号:US20210058753A1
公开(公告)日:2021-02-25
申请号:US17077609
申请日:2020-10-22
Applicant: HONEYWELL INTERNATIONAL INC.
Inventor: Robert E. FLASHER , Nayyar Azam Khan RAO , Robert PICKELL , Charles DAIRMAN , Justin SCHASSLER , Paramjit KAUR , Carol ROGERS , Anup RAJE
Abstract: Systems and methods are disclosed for exchanging real-time data between vehicle systems by receiving, at a first source system, a request for data from a requestor and, based on determining that the first source system does not have all requested data, querying an operations center for missing data. Then, based on determining that the operations center does not have all missing data, the operations center is queried for a list comprising candidate source systems. Upon identifying a next source system from the list, the next source system is queried for missing data, and the next source system is removed from the list. Based on whether the next source system has all missing data, either all missing data is transmitted to the requestor, or, the process of finding and querying for the missing data is iteratively performed until all missing data is received or the list is empty.
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3.
公开(公告)号:US20220406195A1
公开(公告)日:2022-12-22
申请号:US17704532
申请日:2022-03-25
Applicant: Honeywell International Inc.
Inventor: Kirupakar JANAKIRAMAN , Nayyar Azam Khan RAO , Kalimulla KHAN , Prasanna M R H , Ramkumar RAJENDRAN , Deepavali Dinkarrao DESAI , Aloke ROY
Abstract: Disclosed are methods, systems, and one or more computer-readable mediums for receiving, at an edge device from an external server, a rules database comprising a set of rules; receiving, by the edge device, first data from at least one device; processing, by the edge device, the received first data by comparing the received data to each rule among the set of rules; identifying a first triggering event in response to detecting a match between the received data and a rule of the rules database; and outputting an alert corresponding to the first triggering event.
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公开(公告)号:US20210020049A1
公开(公告)日:2021-01-21
申请号:US16514847
申请日:2019-07-17
Applicant: Honeywell International Inc.
Abstract: Disclosed are methods, systems and non-transitory computer-readable medium for providing a flight path around a zone of avoidance located on a currently planned flight path of an aircraft. For instance, the method may include obtaining data of the zone of avoidance located on the currently planned flight path; determining a safe distance from the zone of avoidance based on a characteristic of the aircraft or a characteristic of the zone of avoidance; constructing a safety envelope outside of the zone of avoidance by defining the safety envelope based on the safe distance; constructing a plurality of alternate flight paths around the zone of avoidance such that each of the plurality of alternate flight paths avoids crossing into the zone of avoidance and avoids crossing in between the safety envelope and the zone of avoidance; and selecting an optimal flight path from among the plurality of alternate flight paths.
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公开(公告)号:US20200301760A1
公开(公告)日:2020-09-24
申请号:US16358422
申请日:2019-03-19
Applicant: HONEYWELL INTERNATIONAL INC.
Inventor: Kirupakar JANAKIRAMAN , Rajeev MOHAN , Nayyar Azam Khan RAO , Ramkumar RAJENDRAN
IPC: G06F9/54 , G06F16/903 , G06F16/901 , G06Q50/30
Abstract: Disclosed are methods, systems, and non-transitory computer-readable medium for providing application programming interface (API) mashups. For instance, the method may include hosting a plurality of certified FMS micro-services associated with a plurality of FMS APIs; hosting an API mashup generator to perform an API mashup process and an API mashup recommendation process, the API mashup process generating combinations of APIs that include one or more APIs from the plurality of FMS APIs, other avionics APIs, and/or third party APIs; and hosting a service mesh to process a user request from a user device for the API mashup recommendation process or an invoke micro-service process.
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公开(公告)号:US20200226940A1
公开(公告)日:2020-07-16
申请号:US16245589
申请日:2019-01-11
Applicant: Honeywell International Inc.
Inventor: Narayanan SRINIVASAN , Rajeev MOHAN , Kirupakar JANAKIRAMAN , Nayyar Azam Khan RAO , Ramkumar RAJENDRAN
Abstract: Disclosed are systems, methods, and non-transitory computer-readable medium for providing one or more flight management system (FMS) services as a Software as a Service (SaaS) with context-aware intelligence for a plurality of FMS users. For example, a system may include a context analyzer system configured to determine based on one or more context analysis parameters, a prediction engine configured to determine prediction data based on the one or more contexts and/or one or more prediction parameters, a recommender engine configured to determine recommendations based on one or more recommendation requests and/or one or more prediction data, a background processing system configured to identify background operations to support an operation of a first FMS service and generate background support data for the first FMS service, and a message bus in communication with an API gateway, the context analyzer system, the prediction engine, the recommender engine, and the background processing system.
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7.
公开(公告)号:US20240112048A1
公开(公告)日:2024-04-04
申请号:US18055570
申请日:2022-11-15
Applicant: Honeywell International Inc.
Inventor: Subhransu SAHOO , Kalimulla KHAN , Raghu SHAMASUNDAR , Kirupakar J , Alexander PORTER , Nayyar Azam Khan RAO
CPC classification number: G06N5/025 , G06F16/2365
Abstract: A system to filter a data transfer between an external application and a component of a vehicle, includes: a failsafe validation engine, wherein the failsafe validation engine includes: a rules engine to process a data model from the external application based on one or more rules, a context analyzer to receive context data associated with the vehicle, process the context data as the one or more rules, and send the one or more rules to the rules engine, and a schematic parser to receive the data model from the rules engine and parse the data model based on one or more object models defined for the component of the vehicle; and a controller to control the failsafe validation engine.
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公开(公告)号:US20190208386A1
公开(公告)日:2019-07-04
申请号:US16118778
申请日:2018-08-31
Applicant: HONEYWELL INTERNATIONAL INC.
Inventor: Robert E FLASHER , Nayyar Azam Khan RAO , Robert PICKELL , Charles DAIRMAN , Justin SCHASSLER , Paramjit KAUR , Carol ROGERS , Anup RAJE
IPC: H04W4/46 , H04W4/44 , G07C5/00 , H04W88/16 , H04L12/725
Abstract: Systems and methods are disclosed for exchanging real-time data between vehicle systems by receiving, at a first source system, a request for data from a requestor and, based on determining that the first source system does not have all requested data, querying an operations center for missing data. Then, based on determining that the operations center does not have all missing data, the operations center is queried for a list comprising candidate source systems. Upon identifying a next source system from the list, the next source system is queried for missing data, and the next source system is removed from the list. Based on whether the next source system has all missing data, either all missing data is transmitted to the requestor, or, the process of finding and querying for the missing data is iteratively performed until all missing data is received or the list is empty.
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