A Novel Error Model for the Line Scan Imaging System

IF 2.7 3区 工程技术 Q1 ENGINEERING, MULTIDISCIPLINARY Measurement Science and Technology Pub Date : 2023-12-21 DOI:10.1088/1361-6501/ad1809
Xiangling Chen, Zhongjun Qiu, Haipeng Fan
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Abstract

The factors influencing the accuracy of the line scan imaging system (LSIS) are highly complex, and their error propagation mechanisms are poorly clarified. To reasonably and effectively mitigate the impact of mechanical factors on imaging accuracy, a novel comprehensive error model for LSIS is proposed in this paper, revealing the relationship between imaging errors and various mechanical error sources from manufacturing, assembly, and movement. Based on the analysis of the generation and propagation relationship of mechanical errors in LSIS, the integration of the mechanical system and the imaging system is accomplished to form a comprehensive multibody system, thus establishing a complete linear transmission mechanism for mechanical errors in the imaging process within the model. The experiments demonstrate that this model can provide a reference for the localization of mechanical error sources by utilizing the changes in extrinsic parameters during the calibration process. Furthermore, when the sensitivities of error sources are not exceptionally low, and certain cases with systematic errors are excluded, the model can make accurate estimations of the sensitivities of imaging errors to those errors generated by various mechanical sources. The estimated relative errors do not exceed 6%. The results confirm the effectiveness of this model, which can be utilized to ascertain the range of error sources and assess the extent to which errors from various sources impact imaging accuracy. This model provides a basis for the precision optimization of LSIS.
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线扫描成像系统的新型误差模型
影响线扫描成像系统(LSIS)精度的因素非常复杂,其误差传播机制也不甚明了。为了合理有效地降低机械因素对成像精度的影响,本文提出了一种新型的 LSIS 综合误差模型,揭示了成像误差与来自制造、装配和运动的各种机械误差源之间的关系。在分析 LSIS 机械误差产生和传播关系的基础上,将机械系统和成像系统集成为一个综合多体系统,从而在模型中建立了成像过程中机械误差的完整线性传递机制。实验证明,该模型可以利用校准过程中外在参数的变化,为机械误差源的定位提供参考。此外,当误差源的灵敏度不是特别低,并且排除了某些存在系统误差的情况时,该模型可以准确估计成像误差对由各种机械源产生的误差的灵敏度。估计的相对误差不超过 6%。结果证实了该模型的有效性,可用于确定误差源的范围,并评估各种来源的误差对成像精度的影响程度。该模型为 LSIS 的精度优化提供了基础。
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来源期刊
Measurement Science and Technology
Measurement Science and Technology 工程技术-工程:综合
CiteScore
4.30
自引率
16.70%
发文量
656
审稿时长
4.9 months
期刊介绍: Measurement Science and Technology publishes articles on new measurement techniques and associated instrumentation. Papers that describe experiments must represent an advance in measurement science or measurement technique rather than the application of established experimental technique. Bearing in mind the multidisciplinary nature of the journal, authors must provide an introduction to their work that makes clear the novelty, significance, broader relevance of their work in a measurement context and relevance to the readership of Measurement Science and Technology. All submitted articles should contain consideration of the uncertainty, precision and/or accuracy of the measurements presented. Subject coverage includes the theory, practice and application of measurement in physics, chemistry, engineering and the environmental and life sciences from inception to commercial exploitation. Publications in the journal should emphasize the novelty of reported methods, characterize them and demonstrate their performance using examples or applications.
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