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论参数化建筑空间造型设计艺术 被引量:11
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作者 袁承志 易中 《华中建筑》 2012年第3期15-17,共3页
要建筑参数化设计是运用智能软件构建出一系列具有特殊数学关系的几何模型,修改其中一个单位模型的参数,其他模型都作出相应修改的过程。建筑师、结构师、设备师各专业之间的图纸衔接极为精密,设计和施工效率比传统设计方式大大提高。... 要建筑参数化设计是运用智能软件构建出一系列具有特殊数学关系的几何模型,修改其中一个单位模型的参数,其他模型都作出相应修改的过程。建筑师、结构师、设备师各专业之间的图纸衔接极为精密,设计和施工效率比传统设计方式大大提高。通过参数化设计手段能够快速生成大量绚丽多姿的建筑空间造型设计方案,供建筑师和业主挑选。在未来建筑参数化设计大量盛行的时候,我们的地球会进入流动城市时代。该文重点论述了建筑参数化设计的技术本质、技术平台及优劣要素。 展开更多
关键词 建筑参数化设计 参数化主义 流动空间 流动城市 找形
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Distributed H_∞ PID Feedback for Improving Consensus Performance of Arbitrary-delayed Multi-agent System
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作者 Lin-Lin Ou Jun-Jie Chen +2 位作者 Dong-Mei Zhang Lin-Zhang Wei-Dong Zhang 《International Journal of Automation and computing》 EI CSCD 2014年第2期189-196,共8页
The H∞ proportional-integral-differential(PID) feedback for arbitrary-order delayed multi-agent system is investigated to improve the system performance. The closed-loop multi-input multi-output(MIMO) control framewo... The H∞ proportional-integral-differential(PID) feedback for arbitrary-order delayed multi-agent system is investigated to improve the system performance. The closed-loop multi-input multi-output(MIMO) control framework with the distributed PID controller is firstly described for the multi-agent system in a unified way. Then, by using the matrix theory, the prescribed H∞performance criterion of the multi-agent system is shown to be equivalent to several independent H∞ performance constraints of the single-input single-output(SISO) subsystem with respect to the eigenvalues of the Laplacian matrix. Subsequently, for each subsystem,the set of the PID controllers satisfying the required H∞ performance constraint is analytically characterized based on the extended Hermite-Biehler theorem. Finally, the three-dimensional set of the decentralized H∞ PID control parameters is derived by finding the intersection of the H∞ PID regions for all the decomposed subsystems. The simulation results reveal the effectiveness of the proposed method. 展开更多
关键词 Multi-agent system proportional-integral-differential(PID) controller H∞ performance index parametric space consensus.
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