基于AHP/FCA/TRIZ的植保无人机遥控器人机评价与优化  被引量:2

Human-machine evaluation and optimization of plant protection drone remote control based on AHP/FCA/TRIZ

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作  者:赵树行 戚彬[1] 王莉 李衍豪 祝贺 高睿童 ZHAO Shuhang;QI Bin;WANG Li;LI Yanhao;ZHU He;GAO Ruitong(School of Agricultural Engineering and Food Science,Shandong University of Technology,Zibo 255049,China)

机构地区:[1]山东理工大学农业工程与食品科学学院,山东淄博255049

出  处:《山东理工大学学报(自然科学版)》2022年第6期46-51,共6页Journal of Shandong University of Technology:Natural Science Edition

基  金:山东省重点研发计划项目(鲁渝协同)(2021LYXZ012)。

摘  要:为实现植保无人机遥控器方案的优化、提高人机工效,基于植保无人机遥控器的人机工程学特性,建立评价指标,运用层次分析法(AHP)和模糊综合评价法(FCA)对设计中的一款植保无人机遥控器人机工效进行评价,得出人机工效等级,并利用TRIZ对该植保无人机遥控器进行优化设计。优化后人机工效评价分数由4.92提升到5.68,证明了该方法的可行性,也为其它人机工程学产品设计时的评价和优化提供了参考。In order to realize optimization of the remote control scheme of plant protection drones and improve the ergonomics,an evaluation index was established according to the characteristics of the remote controller for plant protection drones,and the analytic hierarchy process(AHP)and fuzzy comprehensive appraisal(FCA)were used to evaluate the under-design remote controller for a plant protection drone.The ergonomics evaluation was conducted to obtain the ergonomics grade,and the TRIZ theory was used to optimize the design of the plant protection drone remote control.The final ergonomics evaluation score was increased from 4.92 to 5.68,which proved the feasibility of the method.The study provides reference for evaluation and optimization of other products under design.

关 键 词:植保无人机遥控器 人机工效 层次分析法 模糊综合评价法 TRIZ理论 

分 类 号:TB472[一般工业技术—工业设计]

 

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