一种基于双轮底盘模型的新型工业AGV控制策略

IF 1.9 4区 计算机科学 Q3 AUTOMATION & CONTROL SYSTEMS Assembly Automation Pub Date : 2022-04-07 DOI:10.1108/aa-09-2021-0122
Hua Ding, Yanhong Huang, Jianqi Shi, Qi Shi, Yang Yang
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引用次数: 2

摘要

目的自动导引车(agv)在工业领域有着广泛的应用。但大多数控制策略只考虑侧向力。这将降低准确性、稳定性和鲁棒性,并将支付额外的成本。因此,本文旨在设计一种初步考虑侧向力的控制策略。从而提高AGV的精度、稳定性和鲁棒性,降低AGV的整体成本。为全面提高AGV的运行性能,本文提出了一种将采用比例-积分-微分(PID)控制的双轮底盘模型(DCM)与配套的快速响应(QR)码导航技术相结合的新方案。以DCM为核心,分析侧向力引起的偏差。然后,通过控制律将DCM与PID控制相结合来抑制误差。同时,二维码导航技术为控制策略提供了有效的数据支持。大多数AGV实验都是在标准环境中进行的。然而,本研究为实验准备了不利的场景和运行条件,产生了详细的数据来证明本研究的策略,可以使AGV在各种不利的环境和机械因素下准确、稳定和稳健的运行过程。独创性/价值本研究提出DCM,充分考虑侧向力,将力转化为速度。随后,PID控制两个车轮的速度,以减少误差。二维码提供了一种高效、低成本的获取信息的方式。三者巧妙结合,形成一种新型的工业AGV控制策略,在全面提高运行性能的同时降低整体成本。
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A novel industrial AGV control strategy based on dual-wheel chassis model
Purpose Automatic guided vehicles (AGVs) are widely used in industrial fields. But most control strategies merely take the lateral force into consideration. This will reduce the accuracy, stability and robustness and will pay additional costs. Therefore, this paper aims to design a control strategy that initially considers lateral force. Thereby, it will improve the accuracy, stability and robustness and reduce the overall cost of AGV. Design/methodology/approach To achieve the goal of comprehensively improving AGV operating performance, this paper presents a new scheme, combining the dual-wheeled chassis model (DCM) using proportional–integral–differential (PID) control and a supporting quick response (QR) code navigation technology. DCM is the core, which analyzes the deviation caused by lateral force. Then, DCM with PID control by the control law is combined to suppress the errors. Meanwhile, QR code navigation technology provides effective data support for the control strategy. Findings Most AGV experiments are carried out in a standard environment. However, this study prepares unfavorable scenarios and operating conditions for the experiments that generate detailed data to demonstrate this study’s strategy, which can make an accurate, stable and robust operation process of AGV under various adverse environmental and mechanical factors. Originality/value This study proposed DCM, fully considering lateral force and converting the force into velocity. Subsequently, PID controls the speed of two wheels to reduce the error. QR code provides an efficient and low – cost way to obtain information. The three are cleverly combined as a novel industrial AGV control strategy, which can comprehensively improve the operating performance while reducing overall costs.
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来源期刊
Assembly Automation
Assembly Automation 工程技术-工程:制造
CiteScore
4.30
自引率
14.30%
发文量
51
审稿时长
3.3 months
期刊介绍: Assembly Automation publishes peer reviewed research articles, technology reviews and specially commissioned case studies. Each issue includes high quality content covering all aspects of assembly technology and automation, and reflecting the most interesting and strategically important research and development activities from around the world. Because of this, readers can stay at the very forefront of industry developments. All research articles undergo rigorous double-blind peer review, and the journal’s policy of not publishing work that has only been tested in simulation means that only the very best and most practical research articles are included. This ensures that the material that is published has real relevance and value for commercial manufacturing and research organizations.
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