基于强边缘和稀疏约束的水位识别

IF 4.3 Q2 Environmental Science
Guoheng Ren, Wei Wang, Hanyu Wei, Xiaofeng Li
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引用次数: 0

摘要

本文以开封市清明上河公园智能水位识别仪为实验对象,将强边缘和稀疏约束算法引入智能水位识别仪,并比较了引入强边缘和稀疏约束算法前后智能水位识别仪的识别效果。结果表明,清晰度值提高了约10%,识别速度也显著提高。识别速度的提高可以有效地提高整个方法的工作效率。强边缘和稀疏约束可以有效提高水位识别的精度,为后续水资源管理提供科学有效的数据和信息,满足水资源管理者有效掌握水位变化规律的需要。这可以为其他领域的识别方法提供技术支持,最终目的是促进水资源的保护和管理,减少自然灾害对人类的危害。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Water level recognition based on strong edge and sparse constraints
This paper takes the intelligent water level recognition instrument of Qingming Shanghe Park in Kaifeng as the experimental object, introduces the algorithm of strong edge and sparse constraint into the intelligent water level recognition instrument, and compares the recognition effect of the intelligent water level recognition instrument before and after the introduction of strong edge and sparse constraint algorithms. The results showed that the clarity value was approximately 10% higher, and the recognition speed was also significantly improved. The improvement of recognition speed can effectively promote the work efficiency of the whole method. Strong edges and sparse constraints can effectively improve the accuracy of water level identification, provide scientific and effective data and information for subsequent water resource management, and meet the needs of water resource managers to effectively grasp the law of water level. This can provide technical support for identification methods in other fields, and the ultimate goal is to promote the protection and management of water resources and reduce the harm of natural disasters on people.
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来源期刊
CiteScore
4.70
自引率
0.00%
发文量
74
审稿时长
4.5 months
期刊介绍: Journal of Water Supply: Research and Technology - Aqua publishes peer-reviewed scientific & technical, review, and practical/ operational papers dealing with research and development in water supply technology and management, including economics, training and public relations on a national and international level.
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