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6篇 您的检索式:作者名="Lin Xiangze"
    题名 作者 年代 出处 被引量
1Finite-time Feedback Stabilization of a Class of Input-delay Systems With Saturating Actuators via Digital Control显示文摘In this paper, the problem of making an input-delay system with saturating actuators finite-time stable by virtue of digital control is investigated. A digital state feedback controller and digital observer-controller compensator are designed for two cases: when the state of the input-delay system are available or when it is unavailable. Sufficient conditions which guarantee finite-time stability of a closed-loop input-delay system are given and the proof procedure is presented in a heuristic way by constructing appropriate comparison functions. The condition can be transformed into the intersection of two curves satisfying some constraints, which reveals the relationship between designed parameters clearly. Finally, simulation results are presented to validate the method proposed in this paper.Xiangze Lin Shuaiting Huang Wanli Zhang Shihua Li 2019IEEE/CAA Journal of Automatica Sinica2019,6,5:2
2Finite-time stabilization of switched linear systems with nonlinear saturating actu- ators 显示文摘Lin Xiangze Li Xueling Zou Yun 2014Journal of the Franklin Institute2014,351,6:1
3Finite-time consensus algorithm for multi-agent systems with double-integrator dynamics显示文摘Shihua Li Haibo Du Xiangze Lin 2011Automatica2011,,8:1
4Finite-time consen- sus algorithm for multi-agent systems with double-integrator dynamics 显示文摘Li Shihua Du Haibo Lin Xiangze 2011Automatica2011,47,8:1
5Finite-time consensus algorithm for multi-agent systems with double-integrator dynamics显示文摘Shihua Li Haibo Du Xiangze Lin 2011Automatica2011,,8:1
6Converting intercalation-type cathode in spent lithium-ion batteries into conversion-type cathode显示文摘The widespread applications of lithium-ion batteries(LIBs)generate tons of spent LIBs.Therefore,recycling LIBs is of paramount importance in protecting the environment and saving the resources.Current commercialized LIBs mostly adopt layered oxides such as LiCoO_(2)(LCO)or LiNi_(x)Co_(y)Mn_(1-x-y)O_(2)(NMC)as the cathode materials.Converting the intercalation-type spent oxides into conversion-type cathodes(such as metal fluorides(MFs))offers a valid recycling strategy and provides substantially improved energy densities for LIBs.Herein,two typical Co-based cathodes,LCO and LiNi_(0.6)Co_(0.2)Mn_(0.2)O_(2)(NMC622),in spent LIBs were successfully converted to CoF_(2) and(Ni_(x)Co_(y)Mn_(z))F_(2) cathodes by a reduction and fluorination technique.The as converted CoF_(2) and(Ni_(x)Co_(y)Mn_(z))F_(2) delivered cell energy densities of 650 and 700 Wh/kg,respectively.Advanced atomic-level electron microscopy revealed that the used LCO and NMC622 were converted to highly phase pure Co metal and Ni_(0.6)Co_(0.2)Mn_(0.2) alloys in the used graphite-assisted reduction roasting,simultaneously producing the important product of Li_(2)CO_(3) using only environment friendly solvent.Our study provided a versatile strategy to convert the intercalation-type Co-based cathode in the spent LIBs into conversion-type MFs cathodes,which offers a new avenue to recycle the spent LIBs and substantially increase the energy densities of next generation LIBs.Dingding Zhu Yong Su Jingzhao Chen Xiangze Ou Xuedong Zhang Wen Xie Yuyan Zhou Yunna Guo Qiushi Dai Peng Jia Jitong Yan Lin Geng Baiyu Guo Liqiang Zhang Yongfu Tang Qiao Huang Jianyu Huang 2024Nano Research2024,17,5:0
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