Adaptive river flow measurement method based on spatiotemporal image velocimetry and optical flow

Author:

Wang Jianping1ORCID,Chen Yingbo1,Yao Guangqiang2,Li Neng3

Affiliation:

1. a Faculty of Information Engineering and Automation, Kunming University of Science and Technology, No. 727 Jingming South Road, Chenggong District, Kunming City, Yunnan Province, China

2. b Chuxiong Branch of Yunnan Hydrology and Water Resources Bureau, Building J19, Phase 8, Yiren Ancient Town, Dongsheng East Road, Development Zone, Chuxiong City, Yunnan Province, China

3. c Yuxi Branch of Yunnan Hydrology and Water Resources Bureau, No. 3 Qixing Street, Yuxi City, Yunnan Province, China

Abstract

Abstract This paper proposes an adaptive river discharge measurement method based on spatiotemporal image velocimetry (STIV) and optical flow to solve the problem of blurred texture features and limited measurement accuracy under complex natural environmental conditions. Optical flow tracking generates spatiotemporal images by following the flow mainstream direction of rivers with both regular and irregular natural banks. A texture similarity function filtering method effectively enhances spatiotemporal texture features. The proposed method is applied to a natural river, with measurement results from a propeller-type current meter used as truth values. It is evaluated and compared with three other methods regarding measurement accuracy, error, and other evaluation indices. The results demonstrate that the method significantly improves spatiotemporal image quality. Its estimation outcomes perform better across all evaluation metrics, enhancing the adaptability and accuracy of the flow measurement method.

Funder

National Natural Science Foundation of China

“Yunnan Xingdian Talents Support Plan”

Publisher

IWA Publishing

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