Senseroom System Iterative Measurement Feedback

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Solution Overview

Problem

Current methodologies and systems for measuring and analyzing phenomena in the universe face challenges in repeatability and accuracy due to variations in subject, location, measurement tools, and experimenters, especially when studying diverse subjects such as living organisms or inorganic matter across different scales and locations.

Innovation Solution

The Senseroom system and methodology generate signals using emitters and sensors, transmitting and processing them to make interactive measurements, allowing for the capture, comparison, analysis, and manipulation of any aspect of the universe, from infinitely small to large, and across time, using feedback loops to establish changes and interactions.

Engineering Contradictions & Design Principles

VSEngineering Contradiction Analysis

1Measurement precision

If traditional measurement methodologies are used with human experimenters and conventional tools, then the measurement process is simple to operate, but the measurement precision and repeatability deteriorate due to variations in subject, location, tools, and experimenter

Engineering Contradiction:
Improvemeasurement accuracyVSAvoidsystem complexity
Core Design Contradiction:
Measurement precisionVSDevice complexity

Solution Approach 1:

The patent implements a universal measurement system where signals serve multiple functions: they are generated by emitters, transmitted through the environment, detected by sensors, and processed to create measurements. This multi-functional signal approach allows the same system to measure diverse phenomena (acoustic, optical, electromagnetic) across different locations and conditions, eliminating the need for specialized tools for each measurement type and improving consistency.

Inventive Principle:
Principle #6Universality (Multi-functionality)

Solution Approach 2:

The patent employs feedback loops where measurements are continuously compared against reference signals and previous measurements. The system adjusts its operation based on this feedback, correcting for variations in environmental conditions, tool performance, and observer differences. This iterative refinement process significantly improves measurement precision and repeatability over time.

Inventive Principle:
Principle #23Feedback

2Measurement precision

If feedback loops are implemented for continuous improvement of measurements, then measurement accuracy improves, but the time required for measurement and processing increases

Engineering Contradiction:
Improvemeasurement accuracyVSAvoidmeasurement time
Core Design Contradiction:
Measurement precisionVSLoss of time

Solution Approach 1:

The patent performs preliminary actions by pre-establishing reference signals, calibration data, and measurement protocols before actual measurements are taken. Reference emitters and sensors are positioned and configured in advance, and baseline measurements are captured to account for environmental conditions. This preliminary setup reduces the time needed during actual measurement operations while maintaining high accuracy through pre-computed correction factors.

Inventive Principle:
Principle #10Preliminary action

Solution Approach 2:

The patent implements continuous measurement and processing operations where feedback loops operate without interruption. Rather than performing discrete measurement cycles with stopping and starting, the system maintains continuous signal generation, detection, and processing. This continuous operation eliminates idle time between measurements while the parallel processing of multiple signal types maintains accuracy, effectively reducing total measurement time.

Inventive Principle:
Principle #20Continuity of useful action

Data Source

PatentUS11662355B2Interactive and iterative method and system for using feedback to make measurements, manage data, and printing and scanning anything in real time and non-real time
Publication Date: 2023.05.30 SMITH JOHN
  • US11662355B2 patent drawing

AI summary

An iterative methodology and system (which can also be represented in software), with the option for continual improvement, for the interactive capture, merger, comparison, analysis, cloning and manipulation of anything in the unique universe medium or multiple universes mediums, be it real, virtual or imagined, including thought (of organic or non-organic or other nature), in real time or non-real time, where anything also includes anything infinitely small (or a small base volume of space known as a Senserom), to infinitely large (or a large encapsulating Senseroom volume known as a Senseverse) and can include multiple universes and Senserooms themselves impacting each other, static or dynamic changing over time periods, including the past, present and future. The full set of these infinite Senseroms and Senserooms is considered the Senseverse, which contains anything and/or everything real, virtual and imagined.