Dynamic Component Configuration for Wireless Noise Reduction
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Solution Overview
Problem
Users face challenges in adjusting electronic device configurations to optimize wireless communication performance, particularly when obstacles or interference affect signal strength, limiting the ability to maintain effective communication.
Innovation Solution
An electronic device with a wireless communication unit, display unit, and processor that detects requests to enter a wireless communication maximization mode, allowing users to configure components to reduce noise in the wireless communication frequency band, thereby enhancing performance.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If the electronic device uses default configuration settings, then the device operates with standard performance, but wireless communication performance deteriorates when obstacles or interference are present
Solution Approach 1:
The patent implements dynamic configuration adjustment by allowing the processor to change component settings (memory clock speed, HDD/SSD interface, USB version) based on real-time wireless communication conditions. The system transitions from static default configurations to dynamic adaptive configurations that respond to environmental factors such as obstacles and interference, thereby maintaining reliable wireless communication performance across varying conditions.
Solution Approach 2:
The patent applies parameter changes by modifying specific configuration parameters of internal components (memory clock speed, HDD/SSD interface type, USB version) to reduce noise in the wireless communication frequency band. By adjusting these parameters, the system optimizes the noise floor during wireless operations, directly improving communication reliability without requiring hardware changes.
2Reliability
If the electronic device changes configuration to reduce noise, then wireless communication performance improves, but device complexity increases
Solution Approach 1:
The patent implements self-service by enabling the processor to automatically detect wireless communication conditions and autonomously adjust component configurations without requiring manual user intervention. The system monitors wireless signal quality and automatically modifies memory clock speeds, interface settings, and other parameters to reduce noise, thereby improving communication reliability while keeping the complexity management automated rather than user-borne.
Solution Approach 2:
The patent employs feedback mechanisms where the processor continuously monitors wireless communication performance and uses this information to adjust configuration parameters. The system creates a closed-loop control where wireless communication quality feedback drives configuration changes, which in turn improve communication performance, reducing the need for complex manual configuration management.
3Reliability
If the electronic device reduces noise from components, then wireless communication in weak signal conditions improves, but productivity of other components may decrease
Solution Approach 1:
The patent applies partial action by selectively reducing the performance of specific components (e.g., lowering memory clock speed from maximum to a reduced level) only during wireless communication operations. The system doesn't permanently degrade component capabilities but temporarily adjusts them to reduce noise during critical wireless operations, then restores full performance when wireless communication is not active, thereby balancing communication reliability with overall system productivity.
Data Source
AI summary
An electronic device and method are disclosed. The electronic device includes a wireless communication unit that performs wireless communication, a display unit, and at least one processor, which implements the method, including in response to detecting a request to enter a wireless communication maximization mode, controlling the display unit to display an option for configuring the wireless communication maximization mode, detecting a selection input to the option, and changing a configuration of at least one component of the electronic device to reduce noise from the at least one component generated in a wireless communication frequency band according to the selected option.


