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5篇 您的检索式:作者名="TannaN"
    题名 作者 年代 出处 被引量
1Effects of the N-methyl-D- aspartate receptor antagonist dextromethorphan on vibrotactile adaptation 显示文摘Folger SE Tannan V Zhang Z 2008B MC Neul''osci2008,9,:1
2Efficacy and safety of adenotonsillectomy for pediatric obstructive sleep apnea in Prader-Willi syndrome显示文摘TannaN ChoiSS 2009Ann Otol Rhinol Laryngol2009,118,4:1
3DNA methylation profiling in X; autosome translocations supports a role for L1 re- peats in the spread of X chromosome inactivation 显示文摘Bala Tannan N Brahmachary M Garg P 2014Hum Mol Genet2014,23,5:1
4Effects of the N-methyl-D-aspartate receptor antagonist dextromethorphan on vibrotactile adaptation显示文摘Folger S E Tannan V Zhang Z Holden J K Tommerdahl M 2008BMC Neurosci2008,9,:1
5Exploration of Artificial-intelligence Oriented Power System Dynamic Simulators显示文摘With the rapid development of artificial intelligence(AI),it is foreseeable that the accuracy and efficiency of dynamic analysis for future power system will be greatly improved by the integration of dynamic simulators and AI.To explore the interaction mechanism of power system dynamic simulations and AI,a general design for AI-oriented power system dynamic simulators is proposed,which consists of a high-performance simulator with neural network supportability and flexible external and internal application programming interfaces(APIs).With the support of APIs,simulation-assisted AI and AIassisted simulation form a comprehensive interaction mechanism between power system dynamic simulations and AI.A prototype of this design is implemented and made public based on a highly efficient electromechanical simulator.Tests of this prototype are carried out in four scenarios including sample generation,AI-based stability prediction,data-driven dynamic component modeling,and AI-aided stability control,which prove the validity,flexibility,and efficiency of the design and implementation for AI-oriented power system dynamic simulators.Tannan Xiao Ying Chen Jianquan Wang Shaowei Huang Weilin Tong Tirui He 2023Journal of Modern Power Systems and Clean Energy2023,11,2:1
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