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基于并行变可信度置信下界算法的航行体天线罩结构优化设计
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作者 程吉 魏海鹏 +4 位作者 林毅 刘华坪 舒乐时 周奇 蒋平 《中国舰船研究》 CSCD 北大核心 2021年第4期53-62,共10页
[目的]为了使水下发射的航行体天线罩结构在满足碰撞性能要求的条件下,尽可能减轻结构质量,提出一种并行变可信度置信下界(PVF-LCB)算法,对航行体天线罩结构尺寸进行优化设计。[方法]变可信度置信下界(VF-LCB)函数在设计过程中可自适应... [目的]为了使水下发射的航行体天线罩结构在满足碰撞性能要求的条件下,尽可能减轻结构质量,提出一种并行变可信度置信下界(PVF-LCB)算法,对航行体天线罩结构尺寸进行优化设计。[方法]变可信度置信下界(VF-LCB)函数在设计过程中可自适应地分配计算资源,可以使用高/低精度代理模型构建影响函数(IF),选取对模型改善较大的多个样本点,最后与相应的约束处理策略结合,从而对航行体天线罩结构尺寸进行优化。[结果]提出的方法使航行体天线罩的结构尺寸优化设计满足了要求,且质量比基于变可信度代理模型的串行优化方法降低了约50%,并缩短了设计优化时间;相比单精度并行优化方法,天线罩质量降低约30%,搜索优化可行解的效率得到提高。[结论]该方法在航行体的天线罩结构优化设计中不仅缩短了设计周期,而且提高了优化解的质量,在工程应用中具有一定的发展前景及指导意义。 展开更多
关键词 变可信度代理模型 置信下界函数 影响函数 水下航行体天线罩 结构优化
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Isolation and Functional Characterisation of the Genes Encoding Δ~8-Sphingolipid Desaturase from Brassica rapa 被引量:4
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作者 Shu-Fen Li Li-Ying Song +5 位作者 Wei-Bo Yin yu-Hong Chen Liang Chen Ji-Lin Li Richard R.-C.Wang Zan-Min Hu 《Journal of Genetics and Genomics》 SCIE CAS CSCD 2012年第1期47-59,共13页
8-Sphingolipid desaturase is the key enzyme that catalyses desaturation at the C8 position of the long-chain base of sphingolipids in higher plants. There have been no previous studies on the genes encoding AS-sphingo... 8-Sphingolipid desaturase is the key enzyme that catalyses desaturation at the C8 position of the long-chain base of sphingolipids in higher plants. There have been no previous studies on the genes encoding AS-sphingolipid desaturases in Brassica rapa. In this study, four genes encoding AS-sphingolipid desaturases from B. rapa were isolated and characterised. Phylogenetic analyses indicated that these genes could be divided into two groups: BrD8A, BrD8C and BrD8D in group I, and BrD8B in group II. The two groups of genes diverged before the separation of Arabidopsis and Brassica. Though the four genes shared a high sequence similarity, and their coding desaturases all located in endoplasmic reticulum, they exhibited distinct expression patterns. Heterologous expression in Saccharomyces cerevisiae revealed that BrD8A/B/C/D were functionally diverse AS-sphingolipid desaturases that catalyse different ratios of the two products 8(Z)- and 8(E)-C18-phytosphingenine. The aluminium tolerance of transgenic yeasts expressing BrD8A/B/C/D was enhanced compared with that of control cells. Expression of BrD8A in Arabidopsis changed the ratio of 8(Z):8(E)-C 18-phytosphingenine in transgenic plants. The information reported here provides new insights into the biochemical functional diversity and evolutionary relationship of AS-sphingolipid desaturase in plants and lays a foundation for further investigation of the mechanism of 8(Z)- and 8(E)-C18- phytosphingenine biosynthesis. 展开更多
关键词 △8-Sphingolipid desaturase Biochemical functional diversity Brassica rapa Expression pattern Long-chain base lcb
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