核心模块功能验证平台数字化设计方法研究

YanXia Gao, Peng Wei, Xingheng Jia, Chen Cao
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引用次数: 0

摘要

本文考虑到大型空间站系统之间的功能和接口验证的充分性,采用数字化设计方法,通过特殊异形角,将铝型材材料与铝蜂窝板材料创新结合,研究设计了验证平台。构件连接并建造完成整个结构设计。利用该平台结构对核心模块进行AIT预测试验证,可以尽早发现核心模块系统级、完整设备级、段间功能和接口存在的问题,可以提前验证空间站系统级电气功能的正确性和合理性,有效压缩AIT阶段的系统功能测试时间。弥补了目前传统验证平台对整机某些功能验证不足的不足。本文对验证平台的结构模块进行了详细的设计和分析,并利用NASTRAN有限元分析软件对验证平台整体结构的安全性和可靠性进行了计算和验证。经过实际应用,进一步验证了该平台的创新性和可行性。它值得推广。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research on the Digital Design Method for Core module Functional Verification Platform
In this paper, considering the sufficiency of the verification of functions and interfaces between a large space station system, a digital design method is used to research and design a verification platform, innovatively combining aluminum profiled materials and aluminum honeycomb panel materials, through special profiled corners. Pieces are connected and built to complete the entire structural design. Using this platform structure to perform AIT pre-test verification on a core module, which can find out the problems of a core module system level, complete device level, and inter-segment functions and interfaces as early as possible, and can verify the correctness of the space station system-level electrical functions in advance And rationality, effectively compress the system function test time in the AIT stage, and make up for the shortcomings of current traditional verification platform for the lack of verification of certain functions of whole device. In this paper, the structural module of the verification platform is designed and analyzed in detail, and the safety and reliability of the overall structure of verification platform are calculated and verified by the NASTRAN finite element analysis software. After practical application, the innovation and feasibility of the platform are further verified. It is worth promoting.
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