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当代大学“发展自由”的提出与意义建构 被引量:2
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作者 王一军 《高教发展与评估》 CSSCI 北大核心 2021年第1期6-19,I0001,共15页
在学术本位让渡于学生主体发展的当代大学实践中,“发展自由”进入话语中心。在理论意义上,大学“发展自由”意味着尊重个体价值、通过环境学习、机会成就自我建构、进化性道德与制度规范;在实践意义上,则表现为精神自主、行动自律、学... 在学术本位让渡于学生主体发展的当代大学实践中,“发展自由”进入话语中心。在理论意义上,大学“发展自由”意味着尊重个体价值、通过环境学习、机会成就自我建构、进化性道德与制度规范;在实践意义上,则表现为精神自主、行动自律、学问自理。而学生作为自我探险者、教师作为课程开发者和学习场域作为课程等则构成大学“发展自由”的旨趣。 展开更多
关键词 学术自由 学生本位 学习自由观 学问自理 行动自律
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SYNCHRONIZED PATH FOLLOWING CONTROL OF MULTIPLE HOMOGENOUS UNDERACTUATED AUVS 被引量:3
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作者 Xianbo XIANG Chao LIU +1 位作者 Lionel LAPIERRE Bruno JOUVENCEL 《Journal of Systems Science & Complexity》 SCIE EI CSCD 2012年第1期71-89,共19页
This paper addresses the problem of synchronized path following of multiple homogenous underaetuated autonomous underwater vehicles (AUVs). The dedicated control laws are categorized into two envelopes: One is stee... This paper addresses the problem of synchronized path following of multiple homogenous underaetuated autonomous underwater vehicles (AUVs). The dedicated control laws are categorized into two envelopes: One is steering individual underwater vehicle to track along predefined path, and the other is ensuring tracked paths of multiple vehicles to be synchronized, by means of decentralized speed adaption under the constraints of multi-vehicle communication topology. With these two tasks formulation, geometric path following is built on Lyapunov theory and baekstepping techniques, while injecting helmsman behavior into classic individual path following control. Synchronization of path parameters are reached by using a mixture of tools from linear algebra, graph theory and nonlinear control theory. A simple but effective control design on direct inter-vehicle speed adaption with minimized communication variables, enables the multi-AUV systems to be synchronized and stabilized into an invariant manifold, and all speeds converge to desired assignments as a byproduct. Simulation results illustrate the performance of the synchronized path following control laws proposed. 展开更多
关键词 Path following SYNCHRONIZATION underactuated AUVs.
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