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信息處理單元測試系統并行測試技術(shù)研究
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北京航空航天大學(xué) 自動(dòng)化科學(xué)與電氣工程學(xué)院

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TP334.7

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Research on Parallel Test Technology of Information Processing Unit Test System
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    摘要:

    針對信息處理單元測試的功能需求,設計實(shí)現了基于PXIe總線(xiàn)的測試系統,系統包括測控單元、供電單元和接口單元三個(gè)組成部分,并完成了測試系統的軟件設計;根據信息處理單元測試系統實(shí)際的測試流程和所需資源的使用情況,將并行測試技術(shù)引入到系統中,重新對相互獨立的測試任務(wù)進(jìn)行了并行化分析,構建了該測試系統的任務(wù)調度數學(xué)模型,提出了一種改進(jìn)的自適應遺傳算法(即IAGA算法),解決了并行測試模塊中復雜且難以?xún)?yōu)化的任務(wù)調度問(wèn)題;對任務(wù)調度模型進(jìn)行了算法仿真驗證和實(shí)驗結果分析,驗證了所得解的全局性,所得出的執行序列與串行測試相比,測試效率提高了43.57%,并與其他算法進(jìn)行了對比,驗證了IAGA算法的可行性與優(yōu)越性;最后將IAGA算法嵌入到了測試系統的軟件當中,實(shí)現了該優(yōu)化策略的實(shí)際工程應用。

    Abstract:

    According to the functional requirements of information processing unit test, a test system based on PXIe bus was designed and implemented. The system was composed of three parts: measurement and control unit, power supply unit and interface unit, and the software design of the test system was completed. According to the actual test process and the use of required resources of the information processing unit test system, the parallel test technology is introduced into the system, and the parallel analysis of the independent test tasks is carried out again. The task scheduling mathematical model of the test system is constructed, and an improved adaptive genetic algorithm (IAGA algorithm) is proposed. The complicated task scheduling problem which is difficult to optimize in parallel test module is solved. The algorithm simulation verification and experimental results analysis of the task scheduling model are carried out to verify the global solution. Compared with the serial test, the test efficiency of the obtained execution sequence is increased by 43.57%. Compared with other algorithms, the feasibility and superiority of the IAGA algorithm are verified. Finally, the IAGA algorithm is embedded into the software of the test system to realize the practical engineering application of the optimization strategy.

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周強,王鈺萌,王廷凱.信息處理單元測試系統并行測試技術(shù)研究計算機測量與控制[J].,2023,31(9):1-8.

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  • 收稿日期:2023-04-18
  • 最后修改日期:2023-05-06
  • 錄用日期:2023-05-09
  • 在線(xiàn)發(fā)布日期: 2023-09-18
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