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航天器有效載荷高可靠集成仿真測試系統設計
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中國科學(xué)院空間應用工程與技術(shù)中心,,

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國家載人航天專(zhuān)項工程


Design of Spacecraft Payload Integrated Simulating and Testing System withHighReliability andScalability
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    摘要:

    隨著(zhù)航天器有效載荷的種類(lèi)、功能及結構日趨復雜,對集成仿真測試系統的功能和性能要求也越來(lái)越高。有效載荷集成仿真測試系統是進(jìn)行有效載荷系統級電性能聯(lián)試、整器綜合測試和發(fā)射場(chǎng)測試的重要工具。為滿(mǎn)足不同領(lǐng)域、不同類(lèi)型有效載荷的仿真測試需求,提高系統集成測試與驗證的工作效率和適應性,在分布式高性能計算機網(wǎng)絡(luò )體系結構基礎上,提出一種航天器有效載荷集成仿真測試系統的設計架構。該系統遵從“強內聚、松耦合”的先進(jìn)設計思想,各組成模塊可以根據測試需要進(jìn)行靈活重組,用于有效載荷研發(fā)的各個(gè)階段,具有可靠性高、靈活性強、快速重構和擴展升級的優(yōu)勢。對有效載荷集成仿真測試系統中各測試設備的功能、組成及具體方案進(jìn)行了詳細介紹。

    Abstract:

    With the types, functions and structures of spacecraftpayloadsincreasingly complex,the requirements forthe performance of integratedsimulating and testing system are getting higher and higher.The payload integrated simulating and testing system is an important tool to carry out the payload system-level electrical performance test, the overallintegrated test and the launch field test.To meetthesimulating and testing requirements from different areas and different types of payload and to improve efficiency and adaptability of the system integrated test and verification,a design architecture of spacecraft payloads integratedsimulating and testingsystem with higher reliability, adaptability and scalabilityis proposed based on distributed high-performance computer network architecture. The system complies withthe design concept of strong cohesion and loose coupling, whose modules can be flexibly reorganized according to the testing requirements, and can be used in all stages of payload research and development with the advantages of high reliability, flexibility, fast reconstruction and extended upgrade.The functions, compositions and specific programs of all testing equipments in the payloadintegrated simulating and testingsystem are introduced in detail.

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馬萍,唐衛華,李 峰.航天器有效載荷高可靠集成仿真測試系統設計計算機測量與控制[J].,2018,26(2):1-4.

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歷史
  • 收稿日期:2017-08-28
  • 最后修改日期:2017-09-26
  • 錄用日期:2017-09-27
  • 在線(xiàn)發(fā)布日期: 2018-03-07
  • 出版日期: 2018-02-25
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