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Electromagnetic Bloch-like oscillations in Fibonacci metamaterial waveguide arrays
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作者 LI Zhao-hong HAN De-zhuan 《中国光学(中英文)》 北大核心 2025年第4期947-953,共7页
This paper investigates optical transport in metamaterial waveguide arrays(MMWAs)exhibiting Bloch-like oscillations(BLOs).The MMWAs is fabricated by laterally combining metal and dielectric layers in a Fibonacci seque... This paper investigates optical transport in metamaterial waveguide arrays(MMWAs)exhibiting Bloch-like oscillations(BLOs).The MMWAs is fabricated by laterally combining metal and dielectric layers in a Fibonacci sequence.By mapping the field distribution of Gaussian wave packets in these arrays,we directly visualize the mechanical evolution in a classical wave environment.Three distinct oscillation modes are observed at different incident positions in the ninth-generation Fibonacci structure,without introducing thickness or refractive index gradient in any layer.Additionally,the propagation period of BLOs increases with a redshift of the incident wavelength for both ninth-and tenth-generation Fibonacci MMWAs.These findings provide a valuable method for manipulating BLOs and offer new insights into optical transport in metamaterials,with potential applications in optical device and wave control technologies. 展开更多
关键词 QUASIPERIODIC Bloch-like oscillation METAMATERIAL FIBONACCI
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A new electromagnetic oscillation phenomenon on vanadium-compensationsemi-insulating 4H-SiC PCSS
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作者 Lin Zhouyang Chen Zhipeng +7 位作者 Sun Qian Zheng Zhong Xu Kun Jiang Shuqing Zhang Yuming Wang Yutian Hu Yanfei Guo Hui 《强激光与粒子束》 北大核心 2025年第5期112-118,共7页
Constructing a photoconductive semiconductor switch (PCSS)-metal coil structure, we discovered anew phenomenon of electromagnetic oscillation in vanadium-compensation semi-insulating (VCSI) PCSS. Here thePCSS responds... Constructing a photoconductive semiconductor switch (PCSS)-metal coil structure, we discovered anew phenomenon of electromagnetic oscillation in vanadium-compensation semi-insulating (VCSI) PCSS. Here thePCSS responds to laser pulse and high-voltage signal while the metal coil generates an oscillating voltage pulseenvelope signal. The generation of this oscillating signal is not related to the input bias voltage of the PCSS, the pulsecircuit components, or the electrode structure of the PCSS, rather it is related to the output characteristic of the PCSS.This physical phenomenon can be explained using the current surge model in photoconducting antenna. Preparingohmic contact electrode on the silicon carbide material forms the PCSS, which generates a large number ofphotogenerated carriers when ultra-fast laser pulses irradiate the surface of the material and Simultaneously applies abias voltage signal between the electrode. At this time inside the PCSS the electric field causes the transient current,radiating electromagnetic wave to the metal coil to generate oscillating signal. 展开更多
关键词 VCSI 4H-SiC PCSS electromagnetic oscillation current surge model
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Rate-frequency dependent shear behavior of rough rock joint experiencing normal load oscillations
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作者 DANG Wen-gang LI Xing-ling +1 位作者 TAO Kang FU Jin-yang 《Journal of Central South University》 2025年第5期1873-1886,共14页
Dynamic disturbances certainly reduce shear strength of rock joints,yet the mechanism needs deeper explanation.We investigate the shear behavior of a rough basalt joint by conducting laboratory shear experiments.Const... Dynamic disturbances certainly reduce shear strength of rock joints,yet the mechanism needs deeper explanation.We investigate the shear behavior of a rough basalt joint by conducting laboratory shear experiments.Constant and superimposed oscillating normal loads are applied at the upper block.Meanwhile,the bottom block moves at a constant shear rate.We investigate the shear behavior by:1)altering the normal load oscillation frequency with a same shear rate,2)altering the shear rate with a same normal load oscillation frequency,and 3)altering the normal load oscillation frequency and shear rate simultaneously with a constant ratio.The results show that the oscillating normal load reduces the coefficient of friction(COF).The reduce degree of COF increases with higher shear rate,decreases when increasing normal load oscillation frequency,and keeps constant if the special ratio,v/f(shear rate divided by normal oscillation frequency),is constant.Moreover,we identify a time lag between peak normal load and peak shear load.And the lagging proportion increases with higher shear rate,and decreases with larger static COF.Our results imply that a lower creep rate with a higher normal load oscillation frequency easily destabilizes the creeping fault zones. 展开更多
关键词 normal load oscillation shear rate oscillation frequency friction reduction time lag
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Oscillation mechanism and predictive model of explosion load for natural gas in confined tube
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作者 Chengjun Yue Li Chen Linfeng Xu 《Defence Technology(防务技术)》 2025年第3期13-27,共15页
Gas explosion in confined space often leads to significant pressure oscillation.It is widely recognized that structural damage can be severe when the oscillation frequency of the load resonates with the natural vibrat... Gas explosion in confined space often leads to significant pressure oscillation.It is widely recognized that structural damage can be severe when the oscillation frequency of the load resonates with the natural vibration frequency of the structure.To reveal the oscillation mechanism of gas explosion load,the experiment of gas explosion was conducted in a large-scale confined tube with the length of 30 m,and the explosion process was numerically analyzed using FLACS.The results show that the essential cause of oscillation effect is the reflection of the pressure wave.In addition,due to the difference in the propagation path of the pressure wave,the load oscillation frequency at the middle position of the tunnel is twice that at the end position.The average sound velocity can be used to calculate the oscillation frequency of overpressure accurately,and the error is less than 15%.The instability of the flame surface and the increase of flame turbulence caused by the interaction between the pressure wave and the flame surface are the main contributors to the increase in overpressure and amplitude.The overpressure peaks calculated by the existing flame instability model and turbulence disturbance model are 31.7%and 34.7%lower than the numerical results,respectively.The turbulence factor model established in this work can describe the turbulence enhancement effect caused by flame instability and oscillatory load,and the difference between the theoretical and numerical results is only 4.6%.In the theoretical derivation of the overpressure model,an improved model of dynamic turbulence factor is established,which can describe the enhancement effect of turbulence factor caused by flame instability and self-turbulence.Based on the one-dimensional propagation theory of pressure wave,the oscillatory effect of the load is derived to calculate the frequency and amplitude of pressure oscillation.The average error of amplitude and frequency is less than 20%. 展开更多
关键词 Gas explosion oscillatory load oscillation frequency Turbulence factor
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Impact of the head cavity and submerged nozzle on corner vortices and pressure oscillations in a solid rocket motor with a backward- facing step
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作者 Hongbo Xu Jie Hu +2 位作者 Chao Huo Yifang He Peijin Liu 《Defence Technology(防务技术)》 2025年第7期405-416,共12页
Taking a C1x motor with a backward-facing step which can generate a typical corner vortex as a reference,a numerical methodology using large eddy simulation was established in this study.Based on this methodology,the ... Taking a C1x motor with a backward-facing step which can generate a typical corner vortex as a reference,a numerical methodology using large eddy simulation was established in this study.Based on this methodology,the position of the backward-facing step of the motor was computed and analyzed to determine a basic configuration.Two key geometrical parameters,the head cavity angle and submerged nozzle cavity height,were subsequently introduced.Their effects on the corner vortex motion and their interactions with the acoustic pressure downstream of the backward-facing step were analyzed.The phenomena of vortex acoustic coupling and characteristics of pressure oscillations were further explored.The results show that the maximum error between the simulations and experimental data on the dominant frequency of pressure oscillations is 5.23%,which indicates that the numerical methodology built in this study is highly accurate.When the step is located at less than 5/8 of the total length of the combustion chamber,vortex acoustic coupling occurs,which can increase the pressure oscillations in the motor.Both the vorticity and the scale of vortices in the downstream step increase when the head cavity angle is greater than 24°,which increases the amplitude of the pressure oscillation by maximum 63.0%.The submerged nozzle cavity mainly affects the vortices in the cavity itself rather than those in the downstream step.When the height of the cavity increases from 10 to 20 mm,the pressure oscillation amplitude under the main frequency increases by 39.1%.As this height continues to increase,the amplitude of pressure oscillations increases but the primary frequency decreases. 展开更多
关键词 Solid rocket motor Backward-facing step Head cavity Submerged nozzle Large eddy simulation Pressure oscillation
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Study of thermal decoherence of harmonic oscillators
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作者 LI Jian ZHOU Gao-Liang +2 位作者 YAN Zheng-Xin LIU Wei WANG Zhao-Qi 《原子与分子物理学报》 CAS 北大核心 2025年第5期108-114,共7页
The thermal decoherence of harmonic oscillators is investigated here.The quantum system presented here is a one-dimensional oscillator with angular frequency,which is surrounded by a thermal bath of environmental osci... The thermal decoherence of harmonic oscillators is investigated here.The quantum system presented here is a one-dimensional oscillator with angular frequency,which is surrounded by a thermal bath of environmental oscillators.There are various environmental oscillators with different angular frequency(below an ultraviolet cutoff).At the beginning,the quantum system is a pure state and the environmental oscillators are in thermodynamic equilibrium with temperature.After a period,the system-environment interactions inspire significant decoherence of the quantum state.Such decoherence is displayed by explicit calculations of the purity and von Neumann entropy of the quantum system.It is worth noting that the decoherence could be significant even in the weak coupling and low temperature case due to the large amount of environmental degrees of freedom.Since the decoherence process is inspired between the quantum system and an ordinary thermal environment here,the thermal decoherence result is quite general. 展开更多
关键词 Quantum decoherence Grand canonical ensemble oscillators
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分数阶Relaxation-Oscillation方程的一种分数阶预估-校正方法 被引量:5
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作者 杨晨航 刘发旺 《厦门大学学报(自然科学版)》 CAS CSCD 北大核心 2005年第6期761-765,共5页
涉及松弛(Relaxation)和震动(Oscillation)基本现象的过程是与物理密切相关;从数学观点来看,众所周知由时间分数阶导数α,0<α≤1或1<α≤2来控制的现象,被称之为分数阶松弛或分数阶震动现象.本文考虑分数阶Relaxation-Oscillatio... 涉及松弛(Relaxation)和震动(Oscillation)基本现象的过程是与物理密切相关;从数学观点来看,众所周知由时间分数阶导数α,0<α≤1或1<α≤2来控制的现象,被称之为分数阶松弛或分数阶震动现象.本文考虑分数阶Relaxation-Oscillation方程.证明了分数阶Relaxation-Oscillation方程解的存在惟一性,并利用格林函数给出了它的解析解.我们提出一种计算有效的分数阶预估-校正方法,导出了其误差估计.最后给出数值例子. 展开更多
关键词 分数阶导数 Caputo定义 Riemann-Liouville定义 分数阶Relaxation-oscillation方程 分数阶预估校正法
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Oscillation Criteria for Third-order NonlinearNeutral Dynamic Equations on Time Scales 被引量:3
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《工程数学学报》 CSCD 北大核心 2016年第2期206-220,共15页
Many practical problems, such as those from electronic engineering, mechanicalengineering, ecological engineering, aerospace engineering and so on, need to bedescribed by dynamic equations on time scales, so it is imp... Many practical problems, such as those from electronic engineering, mechanicalengineering, ecological engineering, aerospace engineering and so on, need to bedescribed by dynamic equations on time scales, so it is important in theory andpractical significance to study these equations. In this paper, the oscillation andasymptotic behavior of third-order nonlinear neutral delay dynamic equations ontime scales are studied by using generalized Riccati transformation technique, integralaveraging methods and comparison theorems. The main purpose of this paperis to establish some new oscillation criteria for such dynamic equations. The newKamenev criteria and Philos criteria are given, and an example is considered toillustrate our main results. 展开更多
关键词 THIRD-ORDER nonlinear dynamic equation NEUTRAL oscillation CRITERION ASYMPTOTICBEHAVIOR generalized RICCATI transformation time scale
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A new wide area damping controller design method considering signal transmission delay to damp interarea oscillations in power system 被引量:9
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作者 杨波 孙元章 《Journal of Central South University》 SCIE EI CAS 2014年第11期4193-4198,共6页
Wide area damping controller(WADC) is usually utilized to damp interarea low frequency oscillation in power system. However, conventional WADC design method neglects the influence of signal transmission delay and damp... Wide area damping controller(WADC) is usually utilized to damp interarea low frequency oscillation in power system. However, conventional WADC design method neglects the influence of signal transmission delay and damping performance of WADC designed by the conventional method may deteriorate or even has no effect when signal transmission delay is beyond delay margin, an index that denotes delay endurance degree of power system. Therefore, a new design method for WADC under the condition of expected damping factor and required signal transmission delay is presented in this work. An improved delay margin with less conservatism is derived by adopting a new Lyapunov-Krasovskii function and more compact bounding technique on the derivative of Lyapunov-Krasovskii functional. The improved delay margin, which constructs the correlation of damping factor and signal transmission delay, can be used to design WADC. WADC designed by the proposed method can ensure that power system satisfies expected damping factor when WADC input signal is delayed within delay margin. Satisfactory test results demonstrate the effectiveness of the proposed method. 展开更多
关键词 power system wide area damping controller interarea oscillation time delay
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Transmitting oscillation suppression of low-Tc SQUID TEM system based on RC serial and multi-parallel capacity snubber circuit 被引量:1
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作者 JI Yan-ju LI Zong-wei +5 位作者 RONG Liang-liang XIE Li-jun XIE Xiao-ming DU Shang-yu LIN Jun WANG Yuan 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第9期2076-2084,共9页
A low-temperature superconducting quantum interference device(low-Tc SQUID)can improve the depth of exploration.However,a low-Tc SQUID may lose its lock owing to oscillations in the current or the occurrence of spikes... A low-temperature superconducting quantum interference device(low-Tc SQUID)can improve the depth of exploration.However,a low-Tc SQUID may lose its lock owing to oscillations in the current or the occurrence of spikes when the transmitter is switched off.If a low-Tc SQUID loses its lock,it becomes impossible for the low-Tc SQUID TEM system to function normally and stably for a long period of time.This hinders the practical use of the system.In field experiments,the transmitting current is accurately measured,the voltage overshoot and current spike data are recorded,and the gradient of the primary magnetic field at the center of the transmitting loop is calculated.After analyzing the results of field experiments,it was found that when the gradient of the primary magnetic field far exceeds the slew rate of a low-Tc SQUID,the low-Tc SQUID loses its lock.Based on the mechanisms of the transmitting oscillation,an RC serial and multi-parallel capacity snubber circuit used to suppress such oscillation is proposed.The results of simulation and field experiments show that,when using a 100 m×100 m transmitting loop,the gradient of the primary magnetic field is suppressed from 101.4 to 2.4 mT/s with a transmitting current of 40 A,and from 29.6 to 1.4 mT/s with a transmitting current of 20 A.Therefore,it can be concluded that the gradient of the primary magnetic field is below the slew rate of a low-Tc SQUID after adopting the proposed RC serial and multi-parallel capacity snubber circuit.In conclusion,the technique proposed in this paper solves the problem of a lost lock of a low-Tc SQUID,ensuring that the low-Tc SQUID TEM system functions stably for a long period of time,and providing technical assurance for ground TEM exploration at an additional depth. 展开更多
关键词 low-Tc SQUID TRANSMITTER oscillation snubber circuit
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Application of time–frequency entropy from wake oscillation to gas–liquid flow pattern identification 被引量:6
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作者 HUANG Si-shi SUN Zhi-qiang +1 位作者 ZHOU Tian ZHOU Jie-min 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第7期1690-1700,共11页
Gas–liquid two-phase flow abounds in industrial processes and facilities. Identification of its flow pattern plays an essential role in the field of multiphase flow measurement. A bluff body was introduced in this s... Gas–liquid two-phase flow abounds in industrial processes and facilities. Identification of its flow pattern plays an essential role in the field of multiphase flow measurement. A bluff body was introduced in this study to recognize gas–liquid flow patterns by inducing fluid oscillation that enlarged differences between each flow pattern. Experiments with air–water mixtures were carried out in horizontal pipelines at ambient temperature and atmospheric pressure. Differential pressure signals from the bluff-body wake were obtained in bubble, bubble/plug transitional, plug, slug, and annular flows. Utilizing the adaptive ensemble empirical mode decomposition method and the Hilbert transform, the time–frequency entropy S of the differential pressure signals was obtained. By combining S and other flow parameters, such as the volumetric void fraction β, the dryness x, the ratio of density φ and the modified fluid coefficient ψ, a new flow pattern map was constructed which adopted S(1–x)φ and (1–β)ψ as the vertical and horizontal coordinates, respectively. The overall rate of classification of the map was verified to be 92.9% by the experimental data. It provides an effective and simple solution to the gas–liquid flow pattern identification problems. 展开更多
关键词 gas–liquid two-phase flow wake oscillation flow pattern map time–frequency entropy ensemble empirical mode decomposition Hilbert transform
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Numerical simulation of flow field characteristics and the improvement of pressure oscillation of rotating detonation engine 被引量:1
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作者 Xin-pei Han Quan Zheng +6 位作者 Bao-xing Li Qiang Xiao Han Xu Fang Wang Hao-long Meng Wen-kang Feng Chun-sheng Weng 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2023年第8期191-202,共12页
Due to the inherent working mode of rotating detonation engine(RDE),the detonation flow field has the characteristics of pressure oscillation and axial kinetic energy loss,which makes it difficult to design nozzle and... Due to the inherent working mode of rotating detonation engine(RDE),the detonation flow field has the characteristics of pressure oscillation and axial kinetic energy loss,which makes it difficult to design nozzle and improve propulsion performance.Therefore,in order to improve the characteristics of detonation flow field,the three-dimensional numerical simulation of annular chamber and hollow chamber is carried out with premixed hydrogen/air as fuel in this paper,and then tries to combine the two chambers to weaken the oscillation characteristics of detonation flow field through the interaction of detonation flow field,which is a new method to regulate the detonation flow field.The results show that there are four states of velocity vectors at the outlet of annular chamber and hollow chamber,which makes RDE be affected by rolling moment and results in the loss of axial kinetic energy.In the external flow field of combined chamber,the phenomenon of cyclic reflection of expansion wave and compression wave on the free boundary is observed,which results in Mach disk structure.Moreover,the pressure monitoring points are set at the external flow field.The pressure signal shows that the high-frequency pressure oscillation at the external flow field of the combined chamber has been greatly weakened.Compared to the annular chamber,the relative standard deviation(RSD) has been reduced from 14.6% to5.6%.The results thus demonstrate that this method is feasible to adjust the pressure oscillation characteristics of the detonation flow field,and is of great significance to promote the potential of RDE and nozzle design. 展开更多
关键词 Detonation flow field Combined chamber Pressure oscillation Velocity vector
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ASYMPTOTIC ANALYSIS OF WEAKLY NONLINEAR AND FORCED OSCILLATIONS
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作者 Chen Feng 《Journal of Central South University》 SCIE EI CAS 1996年第2期88-92,共5页
The restriction of KB averaging method is discussed and asymptotic solution of the weakly nonlinear and forced oscillation u″+ω20u=εkcos ωt-εu3 is obtained by Struble technique. The conclusion about this oscillat... The restriction of KB averaging method is discussed and asymptotic solution of the weakly nonlinear and forced oscillation u″+ω20u=εkcos ωt-εu3 is obtained by Struble technique. The conclusion about this oscillation derived with other method is discussed. The results show that KB method will break down when a and θ in the zeroth solution of above eqation are not slowly varying functions of time t. The stationary solution of weakly nonlinear oscillation, u″+ω20u=εkcosω(ε)t-εu3 is also analysed. 展开更多
关键词 ASYMPTOTIC ANALYSIS FORCED oscillation PERTURBATION method
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Cold Flow Experiments and Acoustic Investigation on Pressure Oscillation Induced by Flow Instability
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作者 陈晓龙 何国强 刘佩进 《Defence Technology(防务技术)》 SCIE EI CAS 2010年第2期85-90,共6页
Pressure oscillation in solid rocket motor is believed to be the results of the interaction between the flow instability and the acoustics of combustion chamber.Several reasonable and necessary hypothesizes are given ... Pressure oscillation in solid rocket motor is believed to be the results of the interaction between the flow instability and the acoustics of combustion chamber.Several reasonable and necessary hypothesizes are given to establish an equation to describe this coupling.A cold flow motor called CVS60D(corner vortex shedding 60°)was designed to study the flow-acoustic coupling based on theoretical analysis.Experimental investigations were carried out to determine the acoustics of CVS60D.Corner vortex shedding is generated at the backward facing step which is designed similar to the geometry of the motor with finocyl propellant after the burnout of its fins.A pintle was used to modify the velocity in the duct to change the frequency of vortex shedding.It is found that large amplitude pressure oscillation occurs when the pintle moves to a range of specific position,which indicates that the frequency of vortex shedding is close to one order of acoustic modes of combustion chamber.The amplitude of pressure oscillation changes as the pintle moves. 展开更多
关键词 propulsion system of aviation & aerospace cold flow experiment ACOUSTICS pressure oscillation flow instability
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Wavelet packet-based identification of complex oscillation in biological signals 被引量:4
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作者 Zhang Shuqing Sarah K. Spurgeon +3 位作者 Zhang Liguo Jin Mei John A. Twiddle Femando S. Schlindwein 《仪器仪表学报》 EI CAS CSCD 北大核心 2008年第2期225-232,共8页
Owing to the intrinsic nonlinearities of the system,a contracting mechanism,such as myogenic response,may induce different oscillatory patterns.Many specialists discussed the relations of oscillatory patterns with int... Owing to the intrinsic nonlinearities of the system,a contracting mechanism,such as myogenic response,may induce different oscillatory patterns.Many specialists discussed the relations of oscillatory patterns with intrinsic control system or some pathological condition,but there is no single,well-defined criterion to achieve the identification of regular,stochastic,and chaotic activities.In this paper,we focus on the Mallat algorithm of wavelet packet and use it in the identification of the regular periodic,stochastic,and chaotic fluctuations.According to the specific frequency configuration of the chaos activity,we select proper layers of decomposition of wavelet packet and did fine segments to the frequency of signals.The frequency band of energy convergence could be recognized.The signal of periodic,stochastic,and chaotic could be distinguished depending on it.Numerical experiment is given to show its efficiency.Experiments on 12 babies' lung data have been done.This identification by means of wavelet packet could support the cardiologist or cerebral specialist to do more observation and deeper analysis to physic signals. 展开更多
关键词 复振荡 生物信号 鉴别模式 不规则波动 微波
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Oscillation heat transfer dynamic model for new type oscillation looped heat pipe with double liquid slugs
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作者 鄂加强 朱蓉甲 +2 位作者 陈健美 龙艳 胡小峰 《Journal of Central South University》 SCIE EI CAS 2012年第11期3194-3201,共8页
In order to explain the oscillation heat transfer dynamics of closed loop oscillation heat pipe (CLOHP) with two liquid slugs,analysis on the forces and heat transfer process of the partial gas-liquid phase system inv... In order to explain the oscillation heat transfer dynamics of closed loop oscillation heat pipe (CLOHP) with two liquid slugs,analysis on the forces and heat transfer process of the partial gas-liquid phase system involving multiple parameters was carried out,and a new type oscillation heat transfer dynamic model of the CLOHP was set up based on conservation laws of mass,momentum and energy.Application results indicate that its oscillation heat transfer dynamics features depend largely on the filling rate,pipe diameter and difference in temperature.Besides,oscillation intensity and transfer performance can be improved to a large extent by increasing the temperature difference properly and enlarging the pipe diameter within a certain range under a certain filling rate. 展开更多
关键词 oscillation heat pipe physical model numerical solution
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Numerical Simulation of Self-excited Oscillation Switching Current in HVDC MRTB 被引量:1
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作者 LI Yang YANG Fei RONG Mingzhe WU Yi WU Yifei SUN Hao 《高电压技术》 EI CAS CSCD 北大核心 2013年第10期2547-2552,共6页
This paper presents a numerical study of the current self-excited oscillations during the opening of high voltage direct current(HVDC) metallic return transfer breaker(MRTB).The switching arc is simulated using the ma... This paper presents a numerical study of the current self-excited oscillations during the opening of high voltage direct current(HVDC) metallic return transfer breaker(MRTB).The switching arc is simulated using the magneto-hydrodynamics(MHD) theory coupled with the electric circuit variation.The simulation is proved accurate in simulating the current oscillation and the commutation process in MRTB by the good agreement between the calculated results and the experimental results,which are obtained on a MRTB prototype designed to break about 5 kA of DC current.Both kinds of the results show that the current oscillation starts at about 16.5 ms and the total arc time is about 24 ms with a commutation capacitor bank of 72 μF and an inductor of 173 μH.With a further analyze on how circuit parameters influence arc current oscillations,this study helps to improve the current interruption capability of MRTB. 展开更多
关键词 双筒望远镜 数值模拟 自激振荡 直流输电 开关电流 热感应 磁流体动力学 开关电弧
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Comparison of High-Frequency Oscillation Ventilation with Conventional Mandatory Ventilation in Animal ARDS Model
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作者 SHI Guo-chao HUANG Shao-guang LI Min DENG Wei-wa WAN Huan-ying 《上海第二医科大学学报》 CSCD 北大核心 2005年第10期1091-1091,共1页
关键词 振动频率 通风技术 动物实验 爱滋病
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基于振荡模态辨识的负阻尼振荡故障源定位方法
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作者 刘芳 彭宇恒 +3 位作者 刘乾易 林思思 李勇 刘康志 《电力系统保护与控制》 北大核心 2025年第9期60-69,共10页
大规模、多区域、高度耦合的互联电力系统正面临着扰动响应强、非线性时变、振荡模态复杂等问题。为了从广域测量系统累积的海量数据中挖掘系统故障状态下的振荡信息,实现故障源定位,提出一种基于振荡模态辨识的负阻尼振荡故障源定位方... 大规模、多区域、高度耦合的互联电力系统正面临着扰动响应强、非线性时变、振荡模态复杂等问题。为了从广域测量系统累积的海量数据中挖掘系统故障状态下的振荡信息,实现故障源定位,提出一种基于振荡模态辨识的负阻尼振荡故障源定位方法。首先,提出一种数据驱动的振荡模态辨识(data-driven mode identification,DDMI)方法,实现负阻尼低频振荡的模态参数辨识,从而筛选出主导模态信号。其次,基于阻尼转矩法推导了发电机在多模态下振荡能量计算式。进一步地,利用模态参数辨识结果复现不同模态下的振荡信号,计算主导模态振荡能量,实现振荡故障发电机定位。最后,通过含风电接入的新英格兰系统进行仿真,验证了DDMI方法的优越性。定位结果表明所提定位方法在多机故障情况下仍能准确定位故障源。 展开更多
关键词 振荡模态辨识 振荡定位 阻尼转矩分析 振荡能量
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基于多元同步压缩广义S变换的电力系统次同步振荡源定位
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作者 姜涛 张鹏 +2 位作者 李雪 刘博涵 李国庆 《电力系统自动化》 北大核心 2025年第9期135-145,共11页
快速、准确的次同步振荡源定位对电力系统安全稳定运行意义重大,现有次同步振荡源定位方法难以适用于多模态时变的次同步振荡场景,且计算效率有待提升。为此,提出一种基于多元同步压缩广义S变换(MSSGST)的电力系统次同步振荡源定位方法... 快速、准确的次同步振荡源定位对电力系统安全稳定运行意义重大,现有次同步振荡源定位方法难以适用于多模态时变的次同步振荡场景,且计算效率有待提升。为此,提出一种基于多元同步压缩广义S变换(MSSGST)的电力系统次同步振荡源定位方法。首先,在自适应变化的量测滑动时间窗内计算能量比系数,实时检测系统次同步振荡现象,针对检测到的次同步振荡现象,以节点为单元构建联合量测信息矩阵,进而采用MSSGST对联合量测信息矩阵同步分解得到联合时频矩阵。然后,利用脊线提取技术筛选并重组可表征系统次同步振荡模式的MSSGST系数矩阵。在此基础上,推导基于MSSGST的时-频域暂态能量流计算模型,根据系统次同步振荡期间时-频域能量特性构建振荡源定位指标进行振荡溯源。最后,通过仿真数据和实际电网次同步振荡实测数据验证了所提方法的准确性和有效性。 展开更多
关键词 次同步振荡 振荡源定位 多元同步压缩广义S变换 暂态能量流
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