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农业智能机器人设计方案评价方法研究。

Research on the evaluation method of agricultural intelligent robot design solutions.

机构信息

College of Industrial Design, Hubei University of Technology, Wuhan, China.

出版信息

PLoS One. 2023 Mar 23;18(3):e0281554. doi: 10.1371/journal.pone.0281554. eCollection 2023.

Abstract

BACKGROUND

At present, agricultural robots are produced in large quantities and used in agricultural planting, and the traditional agricultural model is gradually shifting to rely on the Internet of Things and sensors to accurately detect crop growth information. The scientific and rational design of agricultural robots plays a huge role in planting and production efficiency, however, the factors affecting their design are complex and ambiguous, so it is necessary to use a rational evaluation system to make a preferential decision among multiple design options.

PURPOSES

In order to reduce the subjectivity and blindness of program selection in the process of agricultural robot design, make the decision more objective and reasonable, and thus enhance the practicality and scientificity of the program, a new comprehensive evaluation method based on user requirements is proposed.

METHODS

First, after researching and interviewing users and farming operations, obtaining raw information on requirements, using the Kano model to classify the requirements and establishing an evaluation index system. Secondly, the combination of hierarchical analysis(AHP) and entropy weighting method is used to assign weights to the evaluation index system, calculate the weight value and importance ranking of each index, and carry out various program designs based on the ranking. Finally, the VIKOR method was applied to evaluate and rank the design solutions.

RESULTS

The new evaluation method can better complete the preferential decision of the agricultural robot design scheme and get a more perfect design scheme, which reduces the influence of human subjective thinking in the decision-making process.

CONCLUSIONS

The method not only corrects the traditional evaluation method, but also effectively improves the accuracy and comprehensiveness of the design evaluation process. It also provides a reference for designers to preferably select design solutions and promotes the development of small mobile machines in the context of smart agriculture.

摘要

背景

目前,农业机器人已大量生产并应用于农业种植中,传统农业模式正逐渐向依靠物联网和传感器准确检测作物生长信息的方向转变。农业机器人的科学合理设计对种植和生产效率起着巨大的作用,然而,影响其设计的因素复杂且模糊,因此有必要使用合理的评价体系在多个设计方案中做出优先决策。

目的

为了减少农业机器人设计过程中方案选择的主观性和盲目性,使决策更加客观合理,从而增强方案的实用性和科学性,提出了一种基于用户需求的新的综合评价方法。

方法

首先,通过对用户和农事操作进行研究和访谈,获取需求原始信息,利用 Kano 模型对需求进行分类,并建立评价指标体系。其次,采用层次分析法(AHP)和熵权法相结合的方法对评价指标体系进行赋权,计算各指标的权重值和重要性排序,并根据排序进行各种方案设计。最后,采用 VIKOR 方法对设计方案进行评价和排序。

结果

新的评价方法能够更好地完成农业机器人设计方案的优先决策,得到更完善的设计方案,减少了决策过程中人为主观思维的影响。

结论

该方法不仅纠正了传统评价方法的不足,还有效提高了设计评价过程的准确性和全面性,为设计者优选设计方案提供了参考,促进了小型移动机器在智慧农业背景下的发展。

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