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基于最优传输理论的碳中和问题的模型构建研究
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作者 包攀 高雷阜 《运筹与管理》 CSSCI CSCD 北大核心 2024年第6期35-42,共8页
全球变暖已经成为当今社会所关注的焦点问题,导致全球变暖的主要原因是二氧化碳等温室气体的大量排放,我国碳达峰与碳中和目标的提出为进一步解决全球气候变暖现象提供了具体思路。如何实现碳排放量与碳吸收量之间源与汇的有效能量传输... 全球变暖已经成为当今社会所关注的焦点问题,导致全球变暖的主要原因是二氧化碳等温室气体的大量排放,我国碳达峰与碳中和目标的提出为进一步解决全球气候变暖现象提供了具体思路。如何实现碳排放量与碳吸收量之间源与汇的有效能量传输是碳中和相关理论研究的核心问题。最优传输理论是以最小成本找到源与汇的联合概率分布场的最优分布计算,此种研究模式为处理碳中和问题提供了一个全新的研究视角。首先基于贝叶斯分布的后验思想与指数分布族的先验形式,利用Lagrange函数得到碳排放量所满足的边缘概率分布,并根据数据实验得出碳吸收量的分布形式,然后基于最优传输理论建立相应的碳中和模型,并利用回归分析方法对所得到的传输系统进行检验与调节,最后基于数值模拟证明所提出方法的可行性。此种将碳中和作为约束的最优传输模型,能够得到合理有效的碳排放与碳吸收之间的传输计划,具有定量化分析相关问题的理论意义与应用价值。 展开更多
关键词 最优传输 碳中和 贝叶斯分布 LAGRANGE函数 结构风险优化 Sinkhorn算法
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Optimal Structural Design of the Midship of a VLCC Based on the Strategy Integrating SVM and GA 被引量:11
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作者 Li Sun (1) welqi1986@gmail.com Deyu Wang (1) 《Journal of Marine Science and Application》 2012年第1期59-67,共9页
In this paper a hybrid process of modeling and optimization, which integrates a support vector machine (SVM) and genetic algorithm (GA), was introduced to reduce the high time cost in structural optimization of sh... In this paper a hybrid process of modeling and optimization, which integrates a support vector machine (SVM) and genetic algorithm (GA), was introduced to reduce the high time cost in structural optimization of ships. SVM, which is rooted in statistical learning theory and an approximate implementation of the method of structural risk minimization, can provide a good generalization performance in metamodeling the input-output relationship of real problems and consequently cuts down on high time cost in the analysis of real problems, such as FEM analysis. The GA, as a powerful optimization technique, possesses remarkable advantages for the problems that can hardly be optimized with common gradient-based optimization methods, which makes it suitable for optimizing models built by SVM. Based on the SVM-GA strategy, optimization of structural scantlings in the midship of a very large crude carrier (VLCC) ship was carried out according to the direct strength assessment method in common structural rules (CSR), which eventually demonstrates the high efficiency of SVM-GA in optimizing the ship structural scantlings under heavy computational complexity. The time cost of this optimization with SVM-GA has been sharply reduced, many more loops have been processed within a small amount of time and the design has been improved remarkably. 展开更多
关键词 very large crude carrier (VLCC) structural scantlings structural optimization METAMODEL supportvector machine (SVM) genetic algorithms (GA) double-hull oil tanker common structural rules (CSR)
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