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September 19, 2025Frontiers in Astronomy and Space Sciences3 citationsOpen Access

A novel space intelligent computing and data processing architecture--the spacecraft payload health management unit (SPHMU)

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WZWenjie ZhaoJRJ. N. RaoMMMiao Ma

Key Points

  • The architecture enables highly reliable data interaction and processing for spacecraft payloads, enhancing overall mission success.
  • Verification through rigorous aerospace-level testing confirmed the architecture's stability and performance metrics in space applications.
  • Utilizing high reliability computers and high performance computers allows for efficient management of telemetry and application software processing.
  • Communication facilitated by FPGA enhances the data management capabilities, marrying robustness with flexibility in space conditions.

Abstract

This paper primarily introduces a novel on-board intelligent computing and intelligent data processing architecture. This architecture leverages the collaborative work of high reliability computers (HRC) and high performance computers (HPC) to achieve highly reliable payload management and data interaction, as well as high-performance intelligent computing and data processing objectives in space application environments. This paper implements the novel on-board intelligent computing and intelligent data processing architecture using a combination of HRC and HPC. Specifically, HRC is responsible for data interaction with the spacecraft bus, including telemetry, telecommand, and control (TTC) information of various payloads, as well as time and space information. HPC, on the other hand, primarily executes application software (APP) to process the received payload data. This includes computationally intensive tasks such as attitude and orbit determination. Communication between HRC and HPC is facilitated through a high reliability field programmable gate array (FPGA). This paper verifies the stability of this architecture through rigorous testing at the aerospace level. The novel on-board intelligent computing and intelligent data processing architecture possesses excellent computing capabilities, spatial adaptability, reliability, and a flexible structure, laying a foundation for high-performance computing in space.

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Cite This Study

Zhao et al. (2025) studied this question.

synapsesocial.com/papers/68d466be31b076d99fa65ab5https://doi.org/10.3389/fspas.2025.1657487
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