Mobile Device Data Reception Based on Battery Charge State
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Solution Overview
Problem
Mobile communication devices in broadcast systems face challenges in optimally receiving data, as existing technologies either consume high energy or lack flexibility in downloading data, leading to suboptimal data reception.
Innovation Solution
A method where the amount of data received by a mobile communication device is determined based on its battery charge state, allowing for optimal data download by adjusting the amount of data according to the battery's charge level, power consumption conditions, and usage mode.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Quantity of substance
If a mobile communication device receives a large amount of data in a broadcast system, then the data reception completeness is improved, but the battery power consumption increases
Solution Approach 1:
The device dynamically adjusts the amount of data received based on real-time battery charge state. When battery charge is high, the device receives more data; when battery charge is low, it receives less data. This dynamic adaptation resolves the contradiction by making the data reception quantity dependent on available energy resources.
Solution Approach 2:
The invention changes the parameter of data reception quantity based on the battery charge state parameter. By monitoring the battery charge level and adjusting the data reception amount accordingly, the system optimizes the trade-off between data reception completeness and power consumption, receiving maximum data when energy is abundant and minimizing reception when energy is scarce.
2Use of energy by moving object
If a mobile communication device receives a small amount of data to conserve battery power, then the power consumption is reduced, but the data reception completeness deteriorates
Solution Approach 1:
The system employs dynamic data reception strategy where the amount of data received is continuously adjusted based on battery charge state. This resolves the contradiction by ensuring that data reception is not fixed but adapts to energy availability, receiving sufficient data when power is abundant while conserving energy when power is limited.
Solution Approach 2:
The invention changes the data reception parameter as a function of battery charge state. When battery charge is high, the device increases data reception to improve completeness; when battery charge is low, it decreases data reception to conserve power. This parameter adaptation resolves the contradiction between power consumption and data reception completeness.
3Loss of time
If the device downloads data when not charging, then the user can access data immediately, but the battery charge depletes faster
Solution Approach 1:
When the device is not charging, it performs partial data reception rather than complete data download. The device receives only a portion of the available data based on current battery charge state, allowing the user to access some data immediately while avoiding rapid battery depletion. This partial action resolves the contradiction between quick data access and battery conservation.
Solution Approach 2:
The device dynamically determines the amount of data to download based on battery charge state. When not charging, it adjusts the data reception amount to balance immediate data access needs with battery conservation, receiving data at a rate that does not exceed energy replenishment capacity.
4Quantity of substance
If the device receives all available data in a broadcast transmission, then the data completeness is maximized, but the flexibility in power management is reduced
Solution Approach 1:
The invention introduces dynamic power management flexibility by allowing the device to adjust data reception quantity based on battery charge state. This resolves the contradiction by providing adaptability: the device can receive all data when power is abundant, partial data when power is moderate, and minimal data when power is scarce, thus maintaining both data completeness potential and power management flexibility.
Solution Approach 2:
The system changes the data reception parameter based on battery charge state, enabling flexible power management. When battery charge is high, the device increases data reception toward completeness; when battery charge is low, it reduces data reception to conserve power. This parameter adaptation maintains both data completeness and power management flexibility simultaneously.
Data Source
AI summary
In a method for receiving data in a mobile communication device in a broadcast system in which an amount of data is transmitted; said mobile communication device comprising a battery; wherein the method comprises the step of receiving a part of said amount of data, wherein the method further comprises the step of determining said part of said amount of data based on a charge state of the battery. In this way, the mobile communication device is able to download/receive an amount of data in dependence to an actual condition experienced by said mobile communication device. A condition of the mobile communication device may, in this context be, for example, a reception condition, a power consumption condition, a battery capacity condition, or a battery charging condition.


