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桐城市2022年水稻直播田杂草暴发难除的原因及补除技术
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作者 吴中福 尤伟 《基层农技推广》 2023年第7期65-67,共3页
2022年安徽省桐城市水稻生长期间经历了长时间的高温干旱天气,水稻病虫害发生较轻,而草害上升为主要问题。部分常用除草剂对稻田抗性稗草、抗性千金子及部分阔叶杂草防效明显下降,造成中后期杂草暴发反弹,药剂对杂草稻防效甚微,除草成... 2022年安徽省桐城市水稻生长期间经历了长时间的高温干旱天气,水稻病虫害发生较轻,而草害上升为主要问题。部分常用除草剂对稻田抗性稗草、抗性千金子及部分阔叶杂草防效明显下降,造成中后期杂草暴发反弹,药剂对杂草稻防效甚微,除草成本大幅度增加。2022年稻田杂草暴发难除的主要原因:田间积累充足的杂草种源,抗性杂草比例逐年上升,不完善的用药技术,粗放的耕作方式以及持续的高温干旱天气,这些因素共同作用导致稻田杂草暴发,其中气象条件是主导因素。对于中后期杂草补除,施用以敌稗配方的除草剂,在高温强光照天气条件下充分发挥药效,喷足喷透,能除掉大部分抗性稗草、千金子以及部分阔叶杂草,对于不能防除的杂草稻和高龄杂草,需人工拔除并带出田外。 展开更多
关键词 桐城市 水稻 杂草 高温干旱 补除技术 敌稗+
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Underwater Image Enhancement Based on the Dark Channel Prior and Attenuation Compensation 被引量:5
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作者 GUO Qingwen XUE Lulu +1 位作者 TANG Ruichun GUO Lingrui 《Journal of Ocean University of China》 SCIE CAS CSCD 2017年第5期757-765,共9页
Aimed at the two problems of underwater imaging, fog effect and color cast, an Improved Segmentation Dark Channel Prior(ISDCP) defogging method is proposed to solve the fog effects caused by physical properties of wat... Aimed at the two problems of underwater imaging, fog effect and color cast, an Improved Segmentation Dark Channel Prior(ISDCP) defogging method is proposed to solve the fog effects caused by physical properties of water. Due to mass refraction of light in the process of underwater imaging, fog effects would lead to image blurring. And color cast is closely related to different degree of attenuation while light with different wavelengths is traveling in water. The proposed method here integrates the ISDCP and quantitative histogram stretching techniques into the image enhancement procedure. Firstly, the threshold value is set during the refinement process of the transmission maps to identify the original mismatching, and to conduct the differentiated defogging process further. Secondly, a method of judging the propagating distance of light is adopted to get the attenuation degree of energy during the propagation underwater. Finally, the image histogram is stretched quantitatively in Red-Green-Blue channel respectively according to the degree of attenuation in each color channel. The proposed method ISDCP can reduce the computational complexity and improve the efficiency in terms of defogging effect to meet the real-time requirements. Qualitative and quantitative comparison for several different underwater scenes reveals that the proposed method can significantly improve the visibility compared with previous methods. 展开更多
关键词 histogram underwater visibility scene attenuation foreground segmentation refinement PSNR camera
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