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20篇 您的检索式:作者名="Xikui Ma"
    题名 作者 年代 出处 被引量
1Analysis of limit cycle behavior in DC-DC boost converters显示文摘Zhang Hao Yang Xiaoping Ma Xikui He Bo 2012Nonlinear Analysis:Real World Applications2012,13,5:1
2Controlling and tracking hyperchaotic Rossler system via active backstepping design显示文摘Zhang Hao Ma Xikui Li Ming 2005Chaos Solitons and Fractals2005,26,:1
3A 3-D Precise Integration Time-Domain Method Without the Restraints of the CourantFriedrich-Levy Stability Condition for the Numerical Solution of Maxwell's Equations显示文摘 Xintai Zhao Yanzhen Zhao 2006IEEE Transactions on Microwave Theory and Techniques2006,54,7:1
4A 3-D precise integration time-domain method without the restraints of the Courant-Friedricb-Levy stability condition for the numerical solution of Maxwell's e- quations 显示文摘MA Xikui ZHAO Xintai ZHAO Yanzhen 2006IEEE Transactions on Microwave The- ory and Techniques2006,54,7:1
5Slow-Scale and Fast-Scale Instabilities in Voltage-Mode Controlled Full-Bridge Inverter显示文摘Ming Li Dong Dai Xikui Ma 2008Circuits, Systems & Signal Processing2008,,6:1
6Transient analysis of low - voltage ride - through in three - phase grid - connected converter with LCL filter using the nonlinear modal series method显示文摘WANG Wei MA Xikui 2013Electric Power Sys- tems Research2013,15,11:1
7Analysis of spatiotemporal patterns in an infinite-dimensional electromagnetic system 显示文摘Wang Lingtao Ma Xikui 2008IEEE Transactions on Circuits and Systems I2008,55,4:1
8An online de- tection aystem for inter-turn short circuit faults in dry-type air-core reactor based on LabVIEW显示文摘YANG Jichao ZHAO Yanzhen MA Xikui 2000IEEE Transactions on Industrial E10ctronics2000,47,5:1
9An Online Detection System for Inter-Turn Short Circuit Faults in Dry-Type Air- Core Reactor Based on LabVIEW显示文摘Jichao Yang Yanzhen Zhao Xikui Ma 2000Industrial Electronics IEEE Transactions on2000,47,5:1
10Study of intermittent bifurcations and chaos in boost PFC converters by nonlinear discrete models显示文摘Zhang Hao Ma Xikui Liu Weizeng 2005Chaos Solitions and Fractals2005,23,:1
11Distortion behavior analysis of general pulse-width modulated zeta PFC con- verter operating in continuous conduction mode显示文摘Zhang Hao Zhang Yuan Ma Xikui 2012IEEE Transactions on Power Electronics2012,27,10:1
12Analysis and Design of Class E Power Amplifier with Nonlinear Parasitic Capacitance at any Duty Ratio显示文摘Zhang Hao Ma Xikui Siu Chung Wong 2007Microwave and Optical Technology Letters2007,49,4:1
13Symbolic analysis of bifurcation in switching power converters: a practical alternative viewpoint of border collision显示文摘Tse C K Dai Dong Ma Xikui 2005Int Jour Bifur Chaos2005,15,7:1
14Slow-Scale and Fast-Scale Instabilities in Voltage-Mode Controlled Full-Bridge Inverter显示文摘Ming Li Dong Dai Xikui Ma 2008Circuits Systems & Signal Processing2008,,6:1
15Slow-scale instabil- ity of single-stage power-factor-correction power supplies显示文摘Dai Dai Li Shengnan Ma Xikui 2007IEEE Trans on Circuits and Systems 12007,54,8:1
16TRANSIENT ANALYSIS OF NONUNIFORM TRANSMISSION LINES WITH NONLINEAR TERMINAL NETWORKS显示文摘A semi-analytical method in time domain is presented for analysis of the transient response of nonuniform transmission lines. In this method, the telegraph equations in time domain is differenced in space domain first, and is transformed into a set of first-order differential equations of voltage and current with respect to time. By integrating these differential equations with respect to time, and precise computation, the solution of these differential equations can be obtained. This method can solve the transient response of various kinds of transmission lines with arbitrary terminal networks. Particularly, it can analyze the nonuniform lines with initial conditions, for which there is no existing effective method to analyze the time response so far. The results obtained with this method are stable and accurate. Two examples are given to illustrate the application of this method.Zhao Jinquan Ma Xikui Xue Jing Qiu Guanyuan 2006Journal of Electronics(China)2006,23,3:0
17Intrinsic spin Hall resonance in Bi-based Janus monolayers显示文摘The spin Hall resonance effect(SHRE)characterized by a large spin Hall conductivity(SHC)holds immense promise for achieving spin logic and memory devices.However,the identification of a material capable of achieving intrinsic SHRE remains elusive.Herein,we present compelling evidence of intrinsic SHRE within the Bi-based Janus BiXY(X=S,Se and Te;Y=Cl,Br and I)monolayers through first-principles calculations and an effective Hamiltonian model.We attribute the unusual scenario to the warping effect in the Janus monolayers which induces a non-zero out-of-plane spin component,accompanied by additional Rashba degenerate points.Furthermore,we develop a comprehensive effective Rashba Hamiltonian,incorporating high order terms of k to accurately describe the intrinsic SHRE and establish the resilience of this phenomenon in the Janus monolayers.Our study presents a captivating platform for exploring intrinsic SHRE and opens up exciting avenues for the development of novel spintronic devices.Lei Sun Xikui Ma Jian Liu Yangyang Li Mingwen Zhao 2023Nano Research2023,16,11:0
18Improved Discrete-Time Approach for Modeling a Class of Switching Converters显示文摘LIMing MA Xikui 2008Chinese Journal of Electronics2008,17,4:0
19Oxygen-modulated metal nitride clusters with moderate binding ability to insoluble Li_(2)S_(x) for reversible polysulfide electrocatalysis显示文摘Multiphase sulfur redox reactions with advanced homogeneous and heterogeneous electrochemical processes in lithium–sulfur(Li–S)batteries possess sluggish kinetics.The slow kinetics leads to significant capacity decay during charge/discharge processes.Therefore,electrocatalysts with adequate sulfurredox properties are required to accelerate reversible polysulfide conversion in cathodes.In this study,we have fabricated an oxygen-modulated metal nitride cluster(C-MoN_(x)-O)that has a moderate binding ability to the insoluble Li_(2)S_(x)for reversible polysulfide electrocatalysis.A Li–S battery equipped with CMoN_(x)-O electrocatalyst displayed a high discharge capacity of 875 mAh g^(-1)at 0.5 C.The capacity decay rate of each cycle was only 0.10%after 280 cycles,which is much lower than the control groups(C-MoO_(x):0.16%;C-MoN_(x):0.21%).Kinetic studies and theoretical calculations suggest that C-MoN_(x)-O electrocatalyst presents a moderate binding ability to the insoluble Li_(2)S_(2)and Li_(2)S when compared to the C-MoO_(x)and C-MoN_(x)surfaces.Thus,the C-MoN_(x)-O can effectively immobilize and reversibly catalyze the solid–solid conversion of Li_(2)S_(2)–Li_(2)S during charge–discharge cycling,thus promoting reaction kinetics and eliminating the shuttle effect.This study to design oxygen-doped metal nitrides provides innovative structures and reversible solid–solid conversions to overcome the sluggish redox chemistry of polysulfides.Menghao Cheng Zhenyu Xing Rui Yan Zhenyang Zhao Tian Ma Mi Zhou Xikui Liu Shuang Li Chong Cheng 2023InfoMat2023,5,4:0
20Tunable sliding ferroelectricity and magnetoelectric coupling in two-dimensional multiferroic MnSe materials显示文摘Sliding ferroelectricity(SFE)found in two-dimensional(2D)van der Waals(vdW)materials,such as BN and transition-metal dichalcogenides bilayers,opens an avenue for 2D ferroelectric materials.Multiferroic coupling in 2D SFE materials brings us an alternative concept for spintronic memory devices.In this study,using first-principles calculations,we demonstrate that MnSe multilayers constructed by the recently-synthesized MnSe monolayer have large sliding-driven reversible out-of-plane electric polarization(~10.6 pC m^(−1))and moderate interlayer sliding barriers superior to the existing 2D SFE materials.Interestingly,the intrinsic electric polarization is accompanied by nonzero net magnetic moments which are also switchable via lateral interlayer sliding.Additionally,both SFE and magnetoelectric coupling can be effectively regulated by external strain and/or hole doping.Our findings suggest the potential of MnSe multilayers in 2D multiferroic and spintronic applications.Kehan Liu Xikui Ma Shuoke Xu Yangyang Li Mingwen Zhao 2023npj Computational Materials2023,,1:0
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