Adaptive Crypto Mining Control Using User Sleep-State Signals
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Solution Overview
Problem
Existing methods for mining virtual currency do not efficiently adjust the mining process based on the user's physical activity, leading to inefficient energy consumption and device loading.
Innovation Solution
A virtual currency mining server that adjusts the amount of cryptocurrency mining based on the user's physical condition, utilizing EEG information, pulse rate, body temperature, and breathing patterns to determine sleep stages and output signals for varying the mining amount.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Productivity
If virtual currency mining is performed continuously at high intensity, then the amount of virtual currency mined increases, but energy consumption and device loading increase excessively
Solution Approach 1:
The patent applies dynamics by making the mining intensity adjustable and adaptive rather than fixed. The mining server dynamically adjusts the mining amount based on real-time user physical state data (heart rate, body temperature, EEG), allowing the system to optimize between productivity and energy consumption according to varying conditions.
Solution Approach 2:
The patent changes the parameter of mining intensity based on physiological parameters. By monitoring physical state indicators (heart rate, temperature, brain waves) and adjusting mining amount accordingly, the system transforms a static mining process into one that adapts to changing physiological conditions, resolving the contradiction between mining output and energy cost.
2Productivity
If virtual currency mining is performed at high intensity, then the mining output increases, but device loading and heat generation increase
Solution Approach 1:
The patent implements feedback control by continuously monitoring user physiological state and using this information to adjust mining intensity. The system receives feedback from sensors measuring heart rate, body temperature, and EEG, then adjusts the mining amount to prevent excessive device loading and heat generation while maintaining acceptable mining output.
Solution Approach 2:
The mining process is made dynamic and adaptive to physiological conditions. Rather than operating at constant high intensity, the system adjusts mining parameters in real-time based on measured physical state, allowing output to vary within optimal ranges that prevent overheating while maintaining productivity when conditions permit.
3Loss of energy
If mining amount is adjusted based on user's physical state, then energy efficiency improves, but system complexity increases due to additional sensors and processing
Solution Approach 1:
The patent applies universality by using a multi-functional integrated system that combines physiological monitoring and cryptocurrency mining in one device. The same processing unit that analyzes physiological data also controls the mining operations, and the sensor array serves both health monitoring and mining optimization functions, reducing overall system complexity despite the added capabilities.
Solution Approach 2:
The system performs self-optimization by automatically adjusting mining parameters based on its own monitoring of physiological state. The device serves itself by using its internal sensors and processing to autonomously determine optimal mining intensity, eliminating the need for external control systems and reducing overall complexity.
Data Source
AI summary
Provided is a method for varying the amount of virtual currency mining based on a user's body responses. In a virtual currency mining server according to one embodiment, the method includes: acquiring physical activity information from a user terminal; determining the physical state of the user based on the physical activity information; and outputting a signal to mine virtual currency based on the physical state of the user.


