Psyche Hardware Abstraction Simulation Environment (PHASE): Development of High-Fidelity Downlink Model for Flight Software Performance Testing
NASA NTRS · Presentation · 20210022901 · Published 2021-11-10 · Goddard Space Flight Center · 4 authors
Abstract and citation only, verbatim from NASA NTRS; full text lives there. All credit to the authors and Goddard Space Flight Center.
Abstract
NASA’s Katherine Johnson Independent Verification and Validation (IV&V) Independent Test Capability (ITC) Team develops high fidelity software-only simulations (or “digital-twins”) of NASA’s most critical missions that are then used for software verification and validation (V&V). One such digital-twin simulator nearing maturity is the Psyche Hardware Abstraction Simulation Environment (PHASE). PHASE utilizes an instruction set simulator along with ITC-developed avionics models. PHASE includes a newly-developed model of the telecom hardware with a high-fidelity downlink interface, capable of supporting reconfigurable downlink data rates and transmission modes. The different downlink transmission modes allow more processing to be ceded from software onto the telecom hardware. Thus, we are able to monitor the performance of the downlink software module in the time-partitioned OS and perform more realistic dynamic testing based on software’s resource utilization. This presentation will cover PHASE, avionics modeling, the downlink model, and its usage for flight software performance testing.
Authors
- Omar El-ghazawi Technology Management Company (United States)
- Robert Brown Technology Management Company (United States)
- Justin R Morris Goddard Space Flight Center
- Scott Zemerick TMC Technologies
Keywords
- modeling
- simulation
- flight software
- digital-twin
Citation
Omar El-ghazawi, Robert Brown , Justin R Morris , et al. (2021). Psyche Hardware Abstraction Simulation Environment (PHASE): Development of High-Fidelity Downlink Model for Flight Software Performance Testing. Goddard Space Flight Center. NASA NTRS ID 20210022901. https://ntrs.nasa.gov/citations/20210022901 ↗