RF Measurement Data Linking for Traceable Reporting
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Solution Overview
Problem
Existing systems lack an effective and traceable scheme for managing and reporting measurement data from RF measurement devices, particularly in distributed and network-based environments, making it difficult to record and verify the circumstances under which data and results were obtained.
Innovation Solution
A system and method that utilize unique identifiers (UIDs) and checksums to link configuration settings with measurement results, enabling traceable and legally binding reporting, with optional signing certificates for enhanced security, and allowing seamless cloud integration and online reporting.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Ease of operation
If distributed and network-based data processing is used for convenient mobile and collaborated data management, then accessibility and processing capability of measurement data are improved, but traceability and verification of measurement circumstances are lost
Solution Approach 1:
The system segments measurement data management into distinct components: measurement results, configuration settings, and traceability metadata are separated and stored independently but linked through unique identifiers. This allows distributed access to measurement data while preserving traceability information through structured relationships between data elements.
Solution Approach 2:
The patent introduces configuration UIDs and result UIDs as intermediary elements that mediate between the distributed measurement data and the original measurement circumstances. These unique identifiers act as keys that link measurement results back to their corresponding configuration settings and environmental conditions, enabling traceability without centralizing data storage.
2Loss of time
If historical measurement data is stored and displayed remotely, then offline processing and mobile access are enabled, but verification of measurement conditions and legal binding are compromised
Solution Approach 1:
The system performs preliminary actions by capturing and storing configuration settings, environmental data, and measurement results with their unique identifiers at the time of measurement. This preliminary recording of all relevant measurement circumstances enables later verification and legal binding without requiring access to the original measurement device or environment.
Solution Approach 2:
The patent creates digital copies of measurement circumstances through structured data storage that includes configuration UIDs, result UIDs, and associated metadata. These digital copies preserve the essential information needed for verification and legal binding, allowing remote display and offline processing while maintaining reliability through accurate replication of measurement conditions.
3Loss of information
If configuration settings and measurement results are linked through unique identifiers, then traceability and consistency are improved, but system complexity increases
Solution Approach 1:
The unique identifier system serves multiple functions simultaneously: it identifies configuration settings, identifies measurement results, establishes relationships between them, and enables traceability. This multi-functional approach to UIDs simplifies the overall system structure compared to having separate identification and linking mechanisms.
Solution Approach 2:
The patent adds a new dimension to data management by introducing unique identifiers as a linking layer between configuration and results. This dimensional approach allows traceability without increasing complexity in the traditional data storage hierarchy, as the UIDs provide a straightforward key-based relationship that simplifies rather than complicates data retrieval and verification.
Data Source
AI summary
A system for measurement management is configured to obtain a configuration set and an associated configuration unique identifier (UID). The system is also configured to obtain at least one measurement result and an associated result UID. A relation between the configuration UID and the result UID is determined, and the relation is stored.


