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1 September 2018 Coastal Ecosystem Responses to Human and Climatic Changes throughout Asia

Example of a binarized image product after wavelet denoising of remote sensing imagery has occurred. By using typhoon warning methods based on improved support vector machines (SVMs), shortcomings caused by human warnings can be avoided and the effectiveness of typhoon disaster early detection is improved. Eventually, the typhoon remote sensing image is transformed with algorithms into the data signal expression form, and the stability of the signal detection method is compared with the traditional method. Providing an intelligent platform for typhoon prevention can effectively carry out pre-warning of typhoon disasters (Shi, Yu, and Wang, 2018).

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LITERATURE CITED

1.

Shi, H. Yu, Y., and Wang, Y., 2018Fall 2018. Early warning method for sea typhoons using remote sensing imagery based on improved support vector machines (SVMs). In: Ashraf, M.A. and Chowdhury, A.J.K., (eds.), Coastal Ecosystem Responses to Human and Climatic Changes throughout Asia. Journal of Coastal Research, Special Issue No. 82, pp. 180–185. Google Scholar
© 2018 Coastal Education and Research Foundation, Inc. [CERF].
"Coastal Ecosystem Responses to Human and Climatic Changes throughout Asia," Journal of Coastal Research 82(sp1), (1 September 2018). https://doi.org/10.2112/1551-5036-82.sp1.ii
Published: 1 September 2018
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