Design and Simulation of an ARINC-429 Interfacing and Ingestion Module for Real-Time Aircraft Data Acquisition: System Overview and Functional Validation

Flight Data Recorders (FDRs) and Cockpit Voice Recorders (CVRs) are the standard systems for capturing aircraft data, designed primarily for post-flight and accident analysis. They do not provide a continuous real-time monitoring channel to the ground. This paper presents the system design and functional simulation of an Interfacing and Ingestion Module (IIM) for the BLUE BOX real-time aircraft telemetry system. The IIM acts as a non-intrusive, parallel monitoring lane alongside the existing FDR/CVR systems. The proposed module accepts flight data, cockpit audio, and cockpit video as inputs and processes them through a chain that includes engineering-unit conversion, CRC-16 error detection, timestamp generation, priority handling, FIFO buffering, and packetization. The system is modelled and simulated in MATLAB/Simulink. Functional validation results covering controlled error injection, CRC-16 error detection, ground-station data recovery, and throughput measurement confirm that the proposed IIM processing chain operates correctly and provides a viable architecture for real-time aircraft data monitoring.

Authors

Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-09-29
DOI
https://doi.org/10.5281/zenodo.23034435
Primary Topic
Power Line Communications and Noise
Type
article
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article

Design and Simulation of an ARINC-429 Interfacing and Ingestion Module for Real-Time Aircraft Data Acquisition: System Overview and Functional Validation

Chinthala Rupasri, Prof. S. Varadarajan
Zenodo (CERN European Organization for Nuclear Research)
Power Line Communications and Noise
article

Design and Simulation of an ARINC-429 Interfacing and Ingestion Module for Real-Time Aircraft Data Acquisition: System Overview and Functional Validation

Chinthala Rupasri, Prof. S. Varadarajan
article en

Abstract

Flight Data Recorders (FDRs) and Cockpit Voice Recorders (CVRs) are the standard systems for capturing aircraft data, designed primarily for post-flight and accident analysis. They do not provide a continuous real-time monitoring channel to the ground. This paper presents the system design and functional simulation of an Interfacing and Ingestion Module (IIM) for the BLUE BOX real-time aircraft telemetry system. The IIM acts as a non-intrusive, parallel monitoring lane alongside the existing FDR/CVR systems. The proposed module accepts flight data, cockpit audio, and cockpit video as inputs and processes them through a chain that includes engineering-unit conversion, CRC-16 error detection, timestamp generation, priority handling, FIFO buffering, and packetization. The system is modelled and simulated in MATLAB/Simulink. Functional validation results covering controlled error injection, CRC-16 error detection, ground-station data recovery, and throughput measurement confirm that the proposed IIM processing chain operates correctly and provides a viable architecture for real-time aircraft data monitoring.

Zenodo (CERN European Organization for Nuclear Research)
Openalex Percentile: Top 22%
Power Line Communications and Noise
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Design and Simulation of an ARINC-429 Interfacing and Ingestion Module for Real-Time Aircraft Data Acquisition: System Overview and Functional Validation — Chinthala Rupasri, Prof. S. Varadarajan · Zenodo (CERN European Organization for Nuclear Research) (2026) | TGRS Research Map | TGRS