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SMART RECOGNITION AND CONSUMER-CENTRIC ACTIVITY RECOGNITION BASED SYSTEM FOR BATTERY MANAGEMENT IN MOBILE DEVICE

InventionPending
1views
19Claims · 1 independent
§ Ⅰ

Dossier Overview

Inventor

Sultan Ahmed ALMALKI; Tami Abdulrahman ALGHAMDI; Abhishek SHARMA; Sunil SHARMA

IPC Classification

H4W 52/2G6F 21/57H4W 4/14H4W 4/90H4W 64/

CPC Classification

H4W52/254G6F21/575H4W4/14H4W4/90H4W64/6G6F2221/34

The present invention relates to an intelligent, context-aware battery management system embedded within a mobile device that dynamically allocates power resources based on real-time user behavior, system state, and environmental context. It incorporates a smart recognition engine that analyzes sensor-derived telemetry data to compute behavioral deviation scores, enabling the system to anticipate abnormal or emergency-prone conditions. A continuous activity classification module contextualizes user motion and geolocation to inform power policy decisions. Upon detecting significant behavioral anomalies or critically low battery conditions, an emergency mode subsystem is triggered, restricting device operations to essential functionalities while preserving energy for critical communication and navigation tasks. The system also establishes a secure, lightweight emergency communication tunnel for relaying essential metadata, including GPS and behavioral indicators, to predefined response servers.

Original (Chinese)

The present invention relates to an intelligent, context-aware battery management system embedded within a mobile device that dynamically allocates power resources based on real-time user behavior, system state, and environmental context. It incorporates a smart recognition engine that analyzes sensor-derived telemetry data to compute behavioral deviation scores, enabling the system to anticipate abnormal or emergency-prone conditions. A continuous activity classification module contextualizes user motion and geolocation to inform power policy decisions. Upon detecting significant behavioral anomalies or critically low battery conditions, an emergency mode subsystem is triggered, restricting device operations to essential functionalities while preserving energy for critical communication and navigation tasks. The system also establishes a secure, lightweight emergency communication tunnel for relaying essential metadata, including GPS and behavioral indicators, to predefined response servers.

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