Adaptive Light Adjustment for Specialized Environments

Publication ID: 24-11857731_0009_PTD
Published: October 28, 2025
Category:Specialized Variations & Niche Solutions

Legal Citation

pr1or.art Inc., “Adaptive Light Adjustment for Specialized Environments,” Published Technical Disclosure No. 24-11857731_0009_PTD, Published October 28, 2025, available at https://archive.pr1or.art/24-11857731_0009_PTD
This technical disclosure describes improvements that would be readily apparent to a Person Having Ordinary Skill In The Art (PHOSITA) when considered in combination with the foundational architecture disclosed in U.S. Patent No. 11,857,731.

Summary of the Inventive Concept

An innovative light adjustment system tailored to specific, niche environments, ensuring optimal light parameters for high-security areas, disaster relief, extreme weather conditions, high-altitude areas, and areas with limited power supply.

Background and Problem Solved

The original patent disclosed a light adjustment method and terminal, but it did not address the unique challenges of specialized environments. The present inventive concept adapts the original method to cater to these specific needs, overcoming limitations in terms of security, environmental factors, and power supply.

Detailed Description of the Inventive Concept

The new inventive concept comprises a system or method for adjusting light parameters in response to specific environmental conditions or operational requirements. For high-security areas, the system incorporates a light sensor and a control module to adjust light parameters based on a predefined security protocol. In disaster relief scenarios, the method determines a user's awake and sleep time periods and adjusts light parameters accordingly. For extreme weather conditions, a weather sensor and control module work together to adjust light parameters based on a predefined weather protocol. In high-altitude areas, a light sensor and control module adapt to the unique light intensity conditions. Lastly, in areas with limited power supply, the method adjusts light parameters based on available power and user time periods.

Novelty and Inventive Step

The new claims introduce novel adaptations of the original light adjustment method to address the specific challenges of high-security areas, disaster relief, extreme weather conditions, high-altitude areas, and areas with limited power supply. These adaptations involve the integration of specialized sensors, control modules, and protocols to ensure optimal light parameters in each environment.

Alternative Embodiments and Variations

Alternative embodiments could include the use of additional sensors, such as humidity or temperature sensors, to further refine light parameter adjustments. Variations could also involve the integration of machine learning algorithms to optimize light parameter adjustments based on user behavior and environmental data.

Potential Commercial Applications and Market

The adaptive light adjustment system has significant commercial potential in various industries, including security, disaster relief, aviation, and renewable energy. The system can be integrated into existing infrastructure or developed as a standalone solution, offering a competitive advantage in terms of energy efficiency, user comfort, and operational effectiveness.

CPC Classifications

SectionClassGroup
A A61 A61M21/02
A A61 A61B5/4815
A A61 A61M2021/0044
G G06 G06F3/0482
G G06 G06F3/04847

Field of Art

Human-computer interaction, adaptive user interface technologies, and intelligent terminal systems with a focus on light management and user context awareness across medical, ergonomic, and environmental monitoring domains

Person of Ordinary Skill (PHOSITA) Profile

A skilled practitioner with expertise in sensor integration, user behavior modeling, adaptive interface design, and embedded systems programming, typically holding a bachelor's or master's degree in electrical engineering, computer science, or human-computer interaction

Obviousness Rationale

A person of ordinary skill would recognize that the source patent's fundamental light adjustment method based on user time periods and contextual parameters provides a readily adaptable framework for specialized environmental applications. The PTD's variations represent predictable extensions of the original patent's core methodology by integrating domain-specific sensors and protocols to modulate light parameters. These adaptations follow established design principles of context-aware computing and represent straightforward technical implementations within a skilled practitioner's capabilities.

Obvious Combinations & Variations

Source Patent Element
Determining user awake and sleep time periods with dynamic light parameter adjustments
PTD Variation
Applying the time period determination method to disaster relief and limited power supply scenarios
Obviousness Reasoning
Known technique of context-aware time-based light management, with predictable results of optimizing user experience in resource-constrained environments
Source Patent Element
User profile and geographical location information for light parameter determination
PTD Variation
Integrating specialized sensors like weather sensors or security protocol sensors to refine light parameter adjustments
Obviousness Reasoning
Predictable application of existing sensor integration techniques to extend contextual awareness in specific environmental domains
Source Patent Element
Dynamic light parameter thresholds based on user characteristics
PTD Variation
Developing environment-specific protocols for high-security, high-altitude, and extreme weather conditions
Obviousness Reasoning
Finite set of design choices for adapting light management to specialized environments using known sensor and control module configurations
Source Patent Element
Terminal-based light adjustment method with user time period segmentation
PTD Variation
Creating portable terminal implementations for diverse environmental contexts
Obviousness Reasoning
Routine engineering adaptation of core light management methodology to different hardware and environmental constraints
Source Patent Element
Machine-implemented light parameter adjustment based on user profiles
PTD Variation
Incorporating potential machine learning algorithms for further optimization of light parameters
Obviousness Reasoning
Predictable technological evolution using known machine learning techniques to enhance adaptive system performance
35 U.S.C. § 103 Summary: Pursuant to 35 U.S.C. ยง 103, the variations disclosed in this publication would have been obvious to a person having ordinary skill in the art at the time of invention, as they represent straightforward technical extensions of the foundational light adjustment methodology disclosed in US Patent 11857731, utilizing predictable combinations of known sensor technologies, control systems, and adaptive interface design principles.

Original Patent Information

Patent NumberUS 11,857,731
TitleLight adjustment method and terminal
Assignee(s)HUAWEI TECHNOLOGIES CO., LTD.