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基于分層模糊決策的航天電子產(chǎn)品模塊尋優(yōu)評價(jià)方法
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山東航天電子技術(shù)研究所

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V443

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Optimal Evaluation Method for Aerospace Electronic Modular Products Based on the Multi-layer Fuzzy Decision Analysis
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    摘要:

    針對航天電子產(chǎn)品模塊多方案選擇,提出了基于分層模糊決策的方案量化尋優(yōu)評價(jià)方法;建立了分層尋優(yōu)評價(jià)模型,并提出了技術(shù)指標、產(chǎn)品化指標和經(jīng)濟指標等多維度尋優(yōu)評價(jià)指標、確定了各指標的尋優(yōu)方向;針對航天產(chǎn)品評價(jià)指標不易量化的特點(diǎn),采用量化計算和專(zhuān)家評價(jià)方式統計數據;結合航天產(chǎn)品關(guān)注重點(diǎn)分配評價(jià)指標不同權重,突出經(jīng)濟性、通用性等指標;應用該方法對工程中功能模塊多方案量化尋優(yōu)評價(jià)的結果與實(shí)際工程選擇一致,該評價(jià)方法應用簡(jiǎn)單、結果清晰,符合認識、理解的過(guò)程,是一種有效的快速評價(jià)方法。

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    Aiming at the multiple projects’ selection of aerospace electronic modular products, a quantitative optimal evaluation method based on multi-layer fuzzy decision analysis is presented. A multi-layer optimal evaluation model is established. The multi-rank factors such as techniques, productization and economics are introduced, and their optimal aspects are determined. As evaluation factors of aerospace products are not easy to be quantified, both quantitative calculation and expert evaluation are taken into consideration for statistics. The weights of evaluation factors are allocated according to the focus of aerospace products, and economic and universal factors are highlighted. Through a case study, the method has successfully carried out quantitative optimal evaluation on multiple projects of functional modules, the result is consistent with the aerospace project selection. The evaluation method is simple, the result is distinct, and it conforms to the process of cognition. It is an effective and rapid evaluation method.

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解寶輝,呂 坤,李 妍,薛瑞麗.基于分層模糊決策的航天電子產(chǎn)品模塊尋優(yōu)評價(jià)方法計算機測量與控制[J].,2023,31(8):287-292.

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歷史
  • 收稿日期:2023-02-02
  • 最后修改日期:2023-03-12
  • 錄用日期:2023-03-13
  • 在線(xiàn)發(fā)布日期: 2023-08-22
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