US2018322253A1PendingUtilityA1

Sensor Based Monitoring

Assignee: IBMPriority: May 5, 2017Filed: May 5, 2017Published: Nov 8, 2018
Est. expiryMay 5, 2037(~10.8 yrs left)· nominal 20-yr term from priority
F24F 11/80F24F 11/30F24F 2120/10G16H 50/30G16H 40/67G05B 2219/2614G16H 50/20F24F 11/0034G06F 19/3418G16H 40/63
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Claims

Abstract

A system for improving mobile sensor based monitoring is provided. The system enables a process for continuously receiving in real time via sensors integrated within a wearable device of a user, vital sign data and movement based data associated with the user. Additionally, environmental data is continuously received via sensors located within a geographical area of the user. The vital sign data, movement based data, environmental data, and medical data are analyzed and current and future mental and physical conditions for the user are predicted. Recommended actions associated with modifying the current and future mental and physical conditions for the user are generated and presented. Current physical conditions for the user are monitored to determine if the recommended actions have been executed.

Claims

exact text as granted — not AI-modified
1 - 14 . (canceled) 
     
     
         15 . A computer program product, comprising a computer readable hardware storage device storing a computer readable program code, said computer readable program code comprising an algorithm that when executed by a processor of a controller device implements a mobile sensor based monitoring improvement method, said method comprising:
 continuously receiving in real time, by said processor via a plurality of sensors integrated within a wearable device of a user, vital sign data and movement based data associated with said user;   continuously receiving, by said processor via a plurality of sensors located within a geographical area comprising a current location of said user, environmental data associated with current environmental conditions of said current location of said user;   receiving, by said processor from a plurality of remotely located systems, medical data associated with said user;   analyzing, by said processor, said vital sign data, said movement based data, said environmental data, and said medical data;   predicting, by said processor based on results of said analyzing, current and future mental and physical conditions for said user;   generating, by said processor, recommended actions associated with modifying said current and future mental and physical conditions for said user;   presenting, by said processor to an authoritative user via a graphical user interface of a hardware device of said authoritative user, said recommended actions;   monitoring, by said processor via said plurality of sensors integrated within said wearable device, current physical conditions for said user to determine if said recommended actions have been executed; and   transmitting, by said processor to external systems, results of said monitoring.   
     
     
         16 . The computer program product of  claim 15 , wherein said method further comprises:
 generating, by said processor, hardware based actions associated with modifying said current and future mental and physical conditions for said user; and   executing, by said processor, said hardware based actions resulting in a modification of hardware enabled systems associated with said current environmental conditions.   
     
     
         17 . The computer program product of  claim 16 , wherein said executing said hardware based actions comprises automatically modifying HVAC systems associated with said current location of said user thereby modifying said current environmental conditions. 
     
     
         18 . The computer program product of  claim 16 , wherein said executing said hardware based actions comprises automatically modifying medical devices associated with said user thereby modifying biomedical attributes of said user. 
     
     
         19 . The computer program product of  claim 16 , wherein said method further comprises:
 tracking, by said processor via said plurality of sensors integrated within said wearable device and said plurality of sensors located within said geographical area, said hardware based actions to determine said modification of said hardware enabled systems; and   transmitting, by said processor to said external systems, results of said tracking.   
     
     
         20 . A controller device comprising a processor coupled to a computer-readable memory unit, said memory unit comprising instructions that when executed by the computer processor implements a mobile sensor based monitoring improvement method comprising:
 continuously receiving in real time, by said processor via a plurality of sensors integrated within a wearable device of a user, vital sign data and movement based data associated with said user;   continuously receiving, by said processor via a plurality of sensors located within a geographical area comprising a current location of said user, environmental data associated with current environmental conditions of said current location of said user;   receiving, by said processor from a plurality of remotely located systems, medical data associated with said user;   analyzing, by said processor, said vital sign data, said movement based data, said environmental data, and said medical data;   predicting, by said processor based on results of said analyzing, current and future mental and physical conditions for said user;   generating, by said processor, recommended actions associated with modifying said current and future mental and physical conditions for said user;   presenting, by said processor to an authoritative user via a graphical user interface of a hardware device of said authoritative user, said recommended actions;   monitoring, by said processor via said plurality of sensors integrated within said wearable device, current physical conditions for said user to determine if said recommended actions have been executed; and   transmitting, by said processor to external systems, results of said monitoring.

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