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徐利锋

个人简介 简介:2011年博士毕业于浙江大学生物信息学研究所,从事生物统计算法、植物虚拟模型构建相关研究;2009年获德国DAAD资助以年轻学者身份访问德国哥廷根大学计算图形系;2016年受邀访问法国国立园艺研究所,进行植物建模方面的科研合作。长期从事图像识别、机器视觉、植物虚拟仿真与可视化,优化算法、生物数据及数量遗传学在可视化模型中的应用等领域的研究工作。 研究项目:1. 国家自然科学基金面上项目,基于株型参数虚拟量测及过程模型参数智能提取的植物三维重建方法,2016/01-2019/12, 作为主要成员参与,已结题2. 国家自然科学基金面上项目,水稻冠层雾滴沉积与传输机理的模拟与仿真,2015/01-2018/12, 作为主要成员参与,已结题3. 国家自然科学基金青年项目,整合数量遗传信息的水稻虚拟育种研究, 2014/01-2016/12,已结题,主持4. 浙江省自然科学基金面上项目,水稻冠层内雾滴沉积与传输过程的模拟与可视化仿真,2014/01-2016/12,作为主要成员参与,已结题5. 浙江省教育厅科研项目,基于虚拟模型的水稻育秧过程氮素施放决策支持系统研究,2012.19-2014.10,主持6. 省科技厅公益技术研究项目,超高产水稻株型数字化设计关键技术研发,2012.01-2014.01,主要完成人7. 企业横向项目,服务器集群可视化运维平台,2020.04-2020.12,主持8. 浙江省自然科学基金探索公益项目,基于H&E染色病理图像AI分析的乳腺恶性肿瘤智能筛查关键技术研发,2023.01-2025.12,主要参与人9. 企业横向项目,智能无创肤质检测算法和平台,200万,2023.06-2025.06,主持  论文论著:[1]    Xu L F, Yang Z Z, Huang Z S, Ding W L, Buck-Sorlin G. Effects of flight parameters for plant protection UAV on          droplets deposition rate based on a 3D simulation approach. Int J Agric & Biol Eng, 2023, 16(1): 66–72.[2]       徐利锋*,黄海帆,丁维龙,范玉雷,基于改进DenseNet的水果小目标检测,浙江大学学报(工学版),2021.2.7,55(2):1-10[3]       XuL F, Huang Z, Yang Z, Ding W, Buck-Sorlin GH (2020) Optimization study on spatial distribution of rice based on a virtual plant approach. PLoS ONE 15(12): e0243717. https://doi.org/10.1371/journal.pone.0243717[4]       徐利锋,杨中柱,黄祖胜,丁维龙, 结合混合粒子群算法的植保无人机航线设计方法, 小型微型计算机系统. 2020, 41(9): 1826-1832[5]       Xu L F, Yang Z Z, Ding W L, Buck-Sorlin G. Physics-based algorithm to simulate tree dynamics under wind load. Int J Agric & Biol Eng, 2020; 13(2): 26–32.[6]       Ding W L, Fan C C, Xu L F*, Xie T, Liu Y, Wan Z X, et al. Optimization method to obtain appropriate spacing parameters for crop cultivation. Int J Agric & Biol Eng, 2020, 13(1): 146–152.[7]       徐利锋,黄祖胜,杨中柱,丁维龙*. 引入多级扰动的混合型粒子群优化算法.软件学报,2019,30(6):1835−1852.  http://www.jos.org.cn/ 1000-9825/5600.htm[8]       徐利锋, Gerhard Buck-Sorlin, 丁维龙, 高楠. 整合数量遗传信息的水稻虚拟生长模型研究进展. 生物数学学报, 2017, 32(3):376-388[9]       Ding WL, Xu LF*, Wei Y, Wu FL, Zhu DF, Zhang YP, Max N, Genetic algorithm based approach to optimize phenotypical traits of virtual rice. Journal of Theoretical Biology, 2016, 403: 59 – 67.[10]       Xu L F, Buck-Sorlin GH, Simulating Genotype - Phenotype Interaction Using Extended Functional-Structural Plant Models: Approaches, Applications and Potential Pitfalls. In: Yin X, Struik PC (eds.): Crop System Biology, pp 33-53. Springer, 2016[11]   Ding WL, Wu SS, Xu L F, Max N. Calculation Method of Plant Similarity giving Consideration to Different Plant Features, Journal of Theoretical Biology, Volume 387, 21 December 2015, Pages 136–143.[12]   Sommer B, Wang SJ, Xu L F, Chen M, Schreiber F, Hybrid- dimensional Visualization and Interaction: Integrating 2D and 3D Visualization with Semi-Immersive Navigation Techniques. In Big Data Visual Analytics (BDVA 2015), pp 1-8. IEEE, 2015[13]   丁维龙, 徐利锋, 危扬, 高楠.水稻株型优化设计系统的设计与实现.系统仿真学报,2015, 27(10): 2467-2474.[14]   Ding WL, Zheng L, Xu L F. Visual Simulation of Plant Interacting with Burning Flame based on the Law of Physics. Proc. of 2015 IEEE International Conference on Multimedia Big Data(BigMM 2015), Beijing, pp. 362-365.[15]   Yusang ZY, Xu LF*, Ding WL, Yi ZY, and Qiu YW, A Functional-Structural Model of Rice Seedling Coupled with Nitrogen Metabolism. Journal of Agricultural Science and Technology B, 4, pp 652-660, 2014[16]   DING WL, HU C, Xu LF, Max N. Design and Implementation of a Plant Morphology Modeling System Based on Evolutionary Strategy, Communicationsin Computer and Information Science. 2014, 361(1):178-187. [17]   徐利锋, 危扬, 丁维龙, Gerhard Buck-Sorlin, 程志君. 基于GroIMP 的水稻功能与结构仿真模型研究. 系统仿真学报, 25(7), pp 1476-1489, 2013[18]   丁维龙, 胡辰, 程志君, 徐利锋, 基于基因表达式编程的植物形态建模智能化方法, 农业工程学报, 29(1), pp 134-141, 2013[19]   Xu LF, Ding WL, Zhu J, Henke M, Kurth W, Buck-Sorlin GH, Simulating superior genotypes for plant height based on QTLs: Towards virtual breeding of rice. In: Kang M, Dumont Y, Guo Y (eds.): 2012 IEEE 4th International Symposium on Plant Growth Modeling, Simulation, Visualization and Applications (PMA12), 2012, pp 447-454, Shanghai, 2012 [20]   Xu LF, Henke M, Zhu J, Kurth W, and Buck-Sorlin GH, A Functional-Structural Model of Rice Linking Quantitative Genetic Information With Morphological Development and Physiological Processes. Annals of Botany, 107(5), pp 817-828, 2011 [21]   Ding WL, Jin HJ, Xu LF, Cheng ZJ, Realistic simulation of tomato garden based on GPU, Communications in Computer and Information Science, 325(3), pp 365-372, 2012 [22]   Xu LF, Henke M, Zhu J, Kurth W, and Buck-Sorlin GH*, A rule-based functional-structural model of rice considering source and sink functions. In: Li B, Jaeger M, Guo Y. eds. Plant Growth modelling, Simulation, Visualisation and Applications. Proceedings – PMA09, 2009, pp 245–252, Beijing, 2010 [23]   Ding WL, Xu LF, Hu C, Zhang YP, Parameter Acquirement Methods for Rule-based Model of Virtual Plant Based on Optimal Algorithms. Proceedings of the 10th World Congress on Intelligent Control and Automation (WCICA 2012). 2012, pp 748-752, 2012 科研成果及专利:  授权软著五项;授权发明专利三项;受理发明专利申请七项。 研究生培养等教学情况:作为第二导师联合培养毕业研究生三名;单独指导毕业研究生六名。 奖励和荣誉:  2013年度计算机学院优秀教师;  2013-2014,计算机学院优秀班主任;  2016/2017,浙江工业大学校级优秀班主任;  2016年度计算机学院教学优秀奖。