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A method for modeling and evaluating the interoperability of multi-agent systems based on hierarchical weighted networks
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作者 DONG Jingwei TANG Wei YU Minggang 《Journal of Systems Engineering and Electronics》 2025年第3期754-767,共14页
Multi-agent systems often require good interoperability in the process of completing their assigned tasks.This paper first models the static structure and dynamic behavior of multiagent systems based on layered weight... Multi-agent systems often require good interoperability in the process of completing their assigned tasks.This paper first models the static structure and dynamic behavior of multiagent systems based on layered weighted scale-free community network and susceptible-infected-recovered(SIR)model.To solve the problem of difficulty in describing the changes in the structure and collaboration mode of the system under external factors,a two-dimensional Monte Carlo method and an improved dynamic Bayesian network are used to simulate the impact of external environmental factors on multi-agent systems.A collaborative information flow path optimization algorithm for agents under environmental factors is designed based on the Dijkstra algorithm.A method for evaluating system interoperability is designed based on simulation experiments,providing reference for the construction planning and optimization of organizational application of the system.Finally,the feasibility of the method is verified through case studies. 展开更多
关键词 complex network agent INTEROPERABILITY susceptible-infected-recovered model dynamic Bayesian network
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Modelling of internal ballistics of gun systems:A review 被引量:1
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作者 F.Ongaro C.Robbe +2 位作者 A.Papy B.Stirbu A.Chabotier 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第11期35-58,共24页
A deep understanding of the internal ballistic process and the factors affecting it is of primary importance to efficiently design a gun system and ensure its safe management. One of the main goals of internal ballist... A deep understanding of the internal ballistic process and the factors affecting it is of primary importance to efficiently design a gun system and ensure its safe management. One of the main goals of internal ballistics is to estimate the gas pressure into the combustion chamber and the projectile muzzle velocity in order to use the propellant to its higher efficiency while avoiding over-pressure phenomena. Dealing with the internal ballistic problem is a complex undertaking since it requires handling the interaction between different constituents during a transient time lapse with very steep rise of pressure and temperature. Several approaches have been proposed in the literature, based on different assumptions and techniques. Generally, depending on the used mathematical framework, they can be classified into two categories: computational fluid dynamics-based models and lumped-parameter ones. By focusing on gun systems, this paper offers a review of the main contributions in the field by mentioning their advantages and drawbacks. An insight into the limitations of the currently available modelling strategies is provided,as well as some considerations on the choice of one model over another. Lumped-parameter models, for example, are a good candidate for performing parametric analysis and optimisation processes of gun systems, given their minimum requirements of computer resources. Conversely, CFD-based models have a better capacity to address more sophisticated phenomena like pressure waves and turbulent flow effects. The performed review also reveals that too little attention has been given to small calibre guns since the majority of currently available models are conceived for medium and large calibre gun systems.Similarly, aspects like wear phenomena, bore deformations or projectile-barrel interactions still need to be adequately addressed and our suggestion is to dedicate more effort on it. 展开更多
关键词 Internal ballistics Numerical modelling Lumped-parameter model Computational fluid dynamics Gun systems
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A comprehensive comparative investigation of frictional force models for dynamics of rotor−bearing systems 被引量:6
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作者 LIU Jing 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第6期1770-1779,共10页
Vibrations of a rotor-bearing system(RBS)can be affected by the frictional forces between the components of the inherent bearings.Thus,an in-depth investigation of the influences of the frictional moments of the beari... Vibrations of a rotor-bearing system(RBS)can be affected by the frictional forces between the components of the inherent bearings.Thus,an in-depth investigation of the influences of the frictional moments of the bearings on the vibrations of the RBS can be helpful for understanding the vibration mechanisms in the rotating machinery.In this study,an improved dynamic model of a RBS considering different frictional force models is presented.A comparative investigation on the influences of the empirical and analytical frictional force models on the vibration characteristics of the RBS is proposed.The empirical frictional force models include Palmgren’s and SKF’s models.The analytical frictional force model considers the rolling friction caused by the radial elastic material hysteresis,slipping friction between the ball and races,viscosity friction caused by the lubricating oil,and contact friction between the ball and cage.The influences of the external load and rotational speed on the vibrations of the RBS are analyzed.The comparative results show that the analytical frictional force model can give a more reasonable method for formulating the effects of the friction forces in the bearings on the vibrations of the RBS.The results also demonstrate that the friction forces in the bearings can significantly affect the vibrations of the RBSs. 展开更多
关键词 friction force vibrations rotor-bearing system dynamic model
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A novel refined dynamic model of high-speed maglev train-bridge coupled system for random vibration and running safety assessment
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作者 MAO Jian-feng LI Dao-hang +3 位作者 YU Zhi-wu CAI Wen-feng GUO Wei ZHANG Guang-wen 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第7期2532-2544,共13页
Running safety assessment and tracking irregularity parametric sensitivity analysis of high-speed maglev train-bridge system are of great concern,especially need perfect refinement models in which all properties can b... Running safety assessment and tracking irregularity parametric sensitivity analysis of high-speed maglev train-bridge system are of great concern,especially need perfect refinement models in which all properties can be well characterized based on various stochastic excitations.A three-dimensional refined spatial random vibration analysis model of high-speed maglev train-bridge coupled system is established in this paper,in which multi-source uncertainty excitation can be considered simultaneously,and the probability density evolution method(PDEM)is adopted to reveal the system-specific uncertainty dynamic characteristic.The motion equation of the maglev vehicle model is composed of multi-rigid bodies with a total 210-degrees of freedom for each vehicle,and a refined electromagnetic force-air gap model is used to account for the interaction and coupling effect between the moving train and track beam bridges,which are directly established by using finite element method.The model is proven to be applicable by comparing with Monte Carlo simulation.By applying the proposed stochastic framework to the high maglev line,the random dynamic responses of maglev vehicles running on the bridges are studied for running safety and stability assessment.Moreover,the effects of track irregularity wavelength range under different amplitude and running speeds on the coupled system are investigated.The results show that the augmentation of train speed will move backward the sensitive wavelength interval,and track irregularity amplitude influences the response remarkably in the sensitive interval. 展开更多
关键词 maglev train-bridge interaction electromagnetic force-air gap model stochastic dynamic analysis running safety assessment probability density evolution method
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基于三度空间和SDM的特大城市地震安全韧性动态评估及演化分析
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作者 刘敬严 郑文文 +2 位作者 蔡博渊 向恩娆 游子吟 《灾害学》 北大核心 2025年第3期1-7,共7页
地震灾害威胁着城市安全韧性的可持续发展。该文基于三度空间与韧性理念构建指标体系,运用系统动力学模型(System Dynamics Model,SDM)提出多维度、动态化的地震安全评估方法。以特大城市——北京为例,对指标进行敏感性分析,发现三度空... 地震灾害威胁着城市安全韧性的可持续发展。该文基于三度空间与韧性理念构建指标体系,运用系统动力学模型(System Dynamics Model,SDM)提出多维度、动态化的地震安全评估方法。以特大城市——北京为例,对指标进行敏感性分析,发现三度空间模拟结果呈三阶段性变化。情景预测模拟结果表明,2030年后信息驱动是韧性提升的主导方向,政策驱动则在均衡性与可持续性方面发挥关键作用,而资源优化情景的边际效益递减。因此,需深化信息技术应用,优化社会治理,精准配置资源,推动特大城市地震安全韧性的提升。 展开更多
关键词 地震灾害 安全韧性 三度空间 系统动力学模型(sdm)
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Dynamics and experiments of a tendon-actuated flexible robotic arm for capturing a floating target
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作者 Xin Xia Yunpeng Sun Jialiang Sun 《Defence Technology(防务技术)》 2025年第5期216-241,共26页
Reusable and flexible capturing of space debris is highly required in future aerospace technologies.A tendon-actuated flexible robotic arm is therefore proposed for capturing floating targets in this paper.Firstly,an ... Reusable and flexible capturing of space debris is highly required in future aerospace technologies.A tendon-actuated flexible robotic arm is therefore proposed for capturing floating targets in this paper.Firstly,an accurate dynamic model of the flexible robotic arm is established by using the absolute nodal coordinate formulation(ANCF)in the framework of the arbitrary Lagrangian-Eulerian(ALE)description and the natural coordinate formulation(NCF).The contact and self-contact dynamics of the flexible robotic arm when bending and grasping an object are considered via a fast contact detection approach.Then,the dynamic simulations of the flexible robotic arm for capturing floating targets are carried out to study the influence of the position,size,and mass of the target object on the grasping performance.Finally,a principle prototype of the tendon-actuated flexible robotic arm is manufactured to validate the dynamic model.The corresponding grasping experiments for objects of various shapes are also conducted to illustrate the excellent performance of the flexible robotic arm. 展开更多
关键词 Tendon-actuated flexible robotic arm Dynamic modeling Contact dynamics ALE-ANCF variable-length cable element Capturing experiments
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Modeling and analysis of maneuver laws based on higher order multi-resolution dynamic mode decomposition for hypersonic glide vehicles
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作者 Zichu Liu Yudong Hu +2 位作者 Changsheng Gao Wuxing Jing Xudong Ji 《Defence Technology(防务技术)》 2025年第6期34-47,共14页
The precise characterization of hypersonic glide vehicle(HGV) maneuver laws in complex flight scenarios still faces challenges. Non-stationary changes in flight state due to abrupt changes in maneuver modes place high... The precise characterization of hypersonic glide vehicle(HGV) maneuver laws in complex flight scenarios still faces challenges. Non-stationary changes in flight state due to abrupt changes in maneuver modes place high demands on the accuracy of modeling methods. To address this issue, a novel maneuver laws modeling and analysis method based on higher order multi-resolution dynamic mode decomposition(HMDMD) is proposed in this work. A joint time-space-frequency decomposition of the vehicle's state sequence in the complex flight scenario is achieved with the higher order Koopman assumption and standard multi-resolution dynamic mode decomposition, and an approximate dynamic model is established. The maneuver laws can be reconstructed and analyzed with extracted multi-scale spatiotemporal modes with clear physical meaning. Based on the dynamic model of HGV, two flight scenarios are established with constant angle of attack and complex maneuver laws, respectively. Simulation results demonstrate that the maneuver laws obtained using the HMDMD method are highly consistent with those derived from the real dynamic model, the modeling accuracy is better than other common modeling methods, and the method has strong interpretability. 展开更多
关键词 Hypersonic glide vehicle Dynamic mode decomposition Higher order koopman assumption Manoeuvre law modeling INTERPRETABILITY
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Hydrodynamics Research on Amphibious Vehicle Systems:Modeling Theory
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作者 居乃鵕 《Defence Technology(防务技术)》 SCIE EI CAS 2006年第1期14-21,共8页
For completing the hydrodynamics software development and the engineering application research on the amphibious vehicle systems, hydrodynamic modeling theory of the amphibious vehicle systems is elaborated, which inc... For completing the hydrodynamics software development and the engineering application research on the amphibious vehicle systems, hydrodynamic modeling theory of the amphibious vehicle systems is elaborated, which includes to build up the dynamic system model of amphibious vehicle motion on water, gun tracking-aiming-firing, bullet hit and armored check-target, gunner operating control, and the simulation computed model of time domain for random sea wave. 展开更多
关键词 水动力学 水陆两用船 动力系统模型 海波 建模理论
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Dynamics and rebound behavior analysis of flexible tethered satellite system in deployment and station-keeping phases 被引量:2
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作者 Yue Zhang Xin Jiang +2 位作者 Zheng-feng Bai Jia-wen Guo Cheng Wei 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2022年第3期509-523,共15页
The tether deployment of a tethered satellite system involves the consideration of complex dynamic properties of the tether,such as large deformation,slack,and even rebound,and therefore,the dynamic modelling of the t... The tether deployment of a tethered satellite system involves the consideration of complex dynamic properties of the tether,such as large deformation,slack,and even rebound,and therefore,the dynamic modelling of the tether is necessary for performing a dynamic analysis of the system.For a variablelength tether element,the absolute nodal coordinate formulation(ANCF)in the framework of the arbitrary Lagrange-Euler(ALE)description was used to develop a precise dynamic model of a tethered satellite.The model considered the gravitational gradient force and Coriolis force in the orbital coordinate frame,and it was validated through numerical simulation.In the presence of dynamic constraints,a deployment velocity of the tether was obtained by an optimal procedure.In the simulation,rebound behavior of the tethered satellite system was observed when the ANCF-ALE model was employed.Notably,the rebound behavior cannot be predicted by the traditional dumbbell model.Furthermore,an improved optimal deployment velocity was developed.Simulation results indicated that the rebound phenomenon was eliminated,and smooth deployment as well as a stable state of the station-keeping process were achieved.Additionally,the swing amplitude in the station-keeping phase decreased when a deployment strategy based on the improved optimal deployment velocity was used. 展开更多
关键词 Tethered satellite system Dynamic model REBOUND DEPLOYMENT ANCF-ALE
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Dynamics of the HBV model with diffusion and time delay 被引量:2
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作者 QIAO mei-hong,QI huan(Department of Control Science and Engineering,Huazhong University of Science and Technology,Wuhan 430074) 《医用生物力学》 EI CAS CSCD 2009年第S1期117-118,共2页
Chronic hepatitis B infection is a major health problem,with approximately 350 million virus carriers worldwide.In Africa,about 30%-60% of children and 60%-100% of adults have
关键词 HBV TIME dynamics of the HBV model with diffusion and time delay
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A novel launch dynamics measurement system for multiple launch rocket system and comparative analysis with numerical simulations 被引量:2
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作者 Li-lin Gu Xiao-ting Rui +3 位作者 Guo-ping Wang Yi An Fu-feng Yang Min Wei 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2021年第2期671-681,共11页
In this paper,a novel launch dynamics measurement system based on the photoelectric sensor pair is built.The actual muzzle time(i.e.a time duration that originates from the initial movement to the rocket’s departure ... In this paper,a novel launch dynamics measurement system based on the photoelectric sensor pair is built.The actual muzzle time(i.e.a time duration that originates from the initial movement to the rocket’s departure from the muzzle)and the muzzle velocity are measured.Compared with the classical methods,the actual muzzle time is obtained by eliminating the ignition delay.The comparative analysis method is proposed with numerical simulations established by the transfer matrix method for multibody systems.The experiment results indicate that the proposed measurement system can effectively measure the actual muzzle time and reduce the error of classical methods,which match well with the simulation results showing the launch dynamics model is reliable and helpful for further analysis and design of the MLRS. 展开更多
关键词 Multiple launch rocket system Photoelectric sensor Launch dynamics measurement system model verification Transfer matrix method for multibody systemS
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Model-based design method of two-axis four-actuator fast steering mirror system 被引量:3
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作者 黑沫 张连超 +2 位作者 周擎坤 鲁亚飞 范大鹏 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第1期150-158,共9页
This work was focused on the model-based design method of two-axis four-actuator(TAFA) fast steering mirror system(FSM), in order to improve the design efficiency. The structure and operation principle commonality of ... This work was focused on the model-based design method of two-axis four-actuator(TAFA) fast steering mirror system(FSM), in order to improve the design efficiency. The structure and operation principle commonality of normal TAFA FSM were investigated. Based on the structure and the commonality, the conditions of single-axis idea, high-frequency resonance and coupling were modeled gradually. Combining these models, a holonomic system model was established to reflect and predict the performance of TAFA FSM. A model-based design method was proposed based on the holonomic system model. The design flow and design concept of the method were described. In accordance with the method, a TAFA FSM was designed. Simulations and experiments of the FSM were done, and the results of them were compared. The compared results indicate that the holonomic system model can well reflect and predict the performance of TAFA FSM. The bandwidth of TAFA FSM is more than 250 Hz; adjust time is less than 15 ms;overshoot is less than 8%; position accuracy is better than 10 μrad; the FSM prototype can satisfy the requirements. 展开更多
关键词 fast steering mirror system model-based design dynamic modeling
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Dynamics analysis of planar armored cable motion in deep-sea ROV system 被引量:3
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作者 全伟才 张竺英 张艾群 《Journal of Central South University》 SCIE EI CAS 2014年第12期4456-4467,共12页
The armored cable used in a deep-sea remotely operated vehicle(ROV) may undergo large displacement motion when subjected to dynamic actions of ship heave motion and ocean current. A novel geometrically exact finite el... The armored cable used in a deep-sea remotely operated vehicle(ROV) may undergo large displacement motion when subjected to dynamic actions of ship heave motion and ocean current. A novel geometrically exact finite element model for two-dimensional dynamic analysis of armored cable is presented. This model accounts for the geometric nonlinearities of large displacement of the armored cable, and effects of axial load and bending stiffness. The governing equations are derived by consistent linearization and finite element discretization of the total weak form of the armored cable system, and solved by the Newmark time integration method. To make the solution procedure avoid falling into the local extreme points, a simple adaptive stepping strategy is proposed. The presented model is validated via actual measured data. Results for dynamic configurations, motion and tension of both ends of the armored cable, and resonance-zone are presented for two numerical cases, including the dynamic analysis under the case of only ship heave motion and the case of joint action of ship heave motion and ocean current. The dynamics analysis can provide important reference for the design or product selection of the armored cable in a deep-sea ROV system so as to improve the safety of its marine operation under the sea state of 4 or above. 展开更多
关键词 armored cable cable dynamics deep-sea remotely operated vehicle(ROV) resonance-zone geometrically exact model Newmark method
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Controller design based on viscoelasticity dynamics model and experiment for flexible drive unit 被引量:1
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作者 吴伟国 侯月阳 《Journal of Central South University》 SCIE EI CAS 2014年第12期4468-4477,共10页
In order to ensure that the system has the advantage of light weight and vibration absorption, the steel rope is used as a flexible transmission part. A flexible drive unit(FDU) is developed, whose features are guided... In order to ensure that the system has the advantage of light weight and vibration absorption, the steel rope is used as a flexible transmission part. A flexible drive unit(FDU) is developed, whose features are guided by steel rope, increasing force by the movable pulley group, modular, convenient and flexible. Dynamics model for controller is deduced based on the constitutive equation of viscoelasticity. Controller is designed for position control and is based on the viscoelasticity dynamics model compensation control strategy proposed. The control system is based on the TURBO PMAC multi-axis motion control card.Prototype loading experiments and velocity experiments results show that the FDU can reach 2 Hz with no load and the max speed of 30(°)/s. The FDU has the capability of the load torque 11.2 N·m and the speed of 24(°)/s simultaneously, and the frequency response is 1.3 Hz. The FDU can be used to be the pitch joint of hip for biped robot whose walking speed is 0.144 km/h theoretically. 展开更多
关键词 flexible drive unit steel rope drive viscoelasticity dynamic model speed-load characteristic
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基于NLRP3/Caspase-1/GSDMD焦亡通路探索小鼠急性肺损伤动态时间模型的建立 被引量:1
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作者 樊懿萱 王心威 +2 位作者 李军梅 易亮 杨志旭 《中国实验动物学报》 CAS CSCD 北大核心 2024年第4期423-434,共12页
目的 基于NLRP3/Caspase-1/GSDMD焦亡通路,建立随时间变化的脂多糖诱导的急性肺损伤小鼠模型,观察不同时间点小鼠肺损伤情况,根据不同时间伤情的变化和焦亡通路相关蛋白的表达,综合筛选出最佳造模时间点,为后续实验奠定动物模型基础。方... 目的 基于NLRP3/Caspase-1/GSDMD焦亡通路,建立随时间变化的脂多糖诱导的急性肺损伤小鼠模型,观察不同时间点小鼠肺损伤情况,根据不同时间伤情的变化和焦亡通路相关蛋白的表达,综合筛选出最佳造模时间点,为后续实验奠定动物模型基础。方法 54只6~8周龄SPF级雄性BALB/c小鼠,随机分为9组,空白对照组(Con组)和造模时间组(1、3、6、12、18、24、48和72 h组),分别检测体重、肺组织大体、病理观察及半定量评分、肺指数、肺含水量及湿干重比;取肺泡灌洗液检测白细胞计数,TNF-α、IL-6、IL-1β、IL-18及BCA蛋白浓度;使用Western Blot检测肺组织中经典焦亡通路相关NLRP3、pro-Caspase-1、Caspase-1、GSDMD蛋白的表达。结果 根据体重统计,各组均有下降,24及48 h组下降最为明显;通过肺组织大体、病理观察及评分发现,24~72 h肺组织损伤严重,每组与Con组比较均有统计学意义;肺指数、肺含水量及湿干重比在24~72 h明显升高;肺泡灌洗液中白细胞从造模后6 h开始升高,48 h可达峰值,至72 h均维持上升状态;灌洗液中IL-18在24 h开始升高,72 h仍然持续升高;TNF-α、IL-1β、IL-6炎症因子在6 h时均保持最高水平状态,在48 h明显降低;灌洗液中蛋白浓度在24、48及72 h与Con组相比均有明显升高;通过Western Blot检测发现,ALI模型各个时间组焦亡通路蛋白NLRP3、pro-Caspase-1、Caspase-1与GSDMD蛋白表达均有上调,24~72 h组的通路蛋白表达与Con组相比明显增强。结论综合分析不同时间组中各项实验指标、炎症因子及Western Blot中通路蛋白的表达,发现焦亡机制与ALI的发生与进展密切相关,并随时间迁移。从实验结果得知24~48 h肺损伤程度严重,肺损伤相关指标及通路蛋白具有研究意义,可作为造模时间参考。也为后续研究ALI的具体机制及干预靶点提供了模型参考与实验基础。 展开更多
关键词 焦亡 急性肺损伤 小鼠 动态时间模型 动物实验
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Dynamics modeling and simulation of a saucer-shaped stratospheric aerostat with an under-slung nacelle
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作者 ZHAO Ming XIAO Chang +1 位作者 ZHOU Ping-fang DUAN Deng-ping 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第6期1288-1298,共11页
A new concept stratospheric aerostat is investigated which consists of a saucer-shaped hull, multi-vectored thrusters, and an under-slung nacelle. The design of this aerostat involves tradeoffs between conventional ai... A new concept stratospheric aerostat is investigated which consists of a saucer-shaped hull, multi-vectored thrusters, and an under-slung nacelle. The design of this aerostat involves tradeoffs between conventional airship and high altitude balloon. The sling connection simplifies structure design significantly, but brings challenges for dynamics analysis. Dynamics modeling for this aerostat is a kind of double-body problem with geometric constraint. Nonlinear dynamics model is established by considering the effects of under-slung nacelle. Oscillation behavior of this double-body system is superposed by a long-period oscillation of the hull and a short-period oscillation of the nacelle. The length of sling only influences the short-period oscillation but the mass ratio of nacelle to main body determines the stability of system. Finally, an envelope about mass ratio and maximal open loop forward thrust as well as speed is presented, where the system is stable. 展开更多
关键词 saucer-shaped AEROSTAT double-body under-slung dynamics modeling
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Rigid body dynamics modeling, experimental characterization, and performance analysis of a howitzer
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作者 Nachiketa TIWARI Mukund PATIL +2 位作者 Ravi SHANKAR Abhishek SARASWAT Rituraj DWIVEDI 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2016年第6期480-489,共10页
A large caliber howitzer is a complex and cumbersome assembly. Understanding its dynamics and performance attributes' sensitivity to changes in its design parameters can be a very time-consuming and expensive exer... A large caliber howitzer is a complex and cumbersome assembly. Understanding its dynamics and performance attributes' sensitivity to changes in its design parameters can be a very time-consuming and expensive exercise, as such an effort requires highly sophisticated test rigs and platforms. However, the need of such an understanding is crucially important for system designers, users, and evaluators. Some of the key performance attributes of such a system are its vertical jump, forward motion, recoil displacement, and force transmitted to ground through tires and trail after the gun has been fired. In this work, we have developed a rigid body dynamics model for a representative howitzer system, and used relatively simple experimental procedures to estimate its principal design parameters. Such procedures can help in obviating the need of expensive experimental rigs, especially in early stages of the design cycle. These parameters were subsequently incorporated into our simulation model,which was then used to predict gun performance. Finally, we conducted several sensitivity studies to understand the influence of changes in various design parameters on system performance. Their results provide useful insights in our understanding of the functioning of the overall system. 展开更多
关键词 HOWITZER GUN CAD modeling Dynamic simulation RECOIL ASSEMBLY PARAMETERS Sensitivity ANALYSIS
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Output Voltage Model and Mechanical-Magnetic Design of Magnetostrictive Vibration Energy Harvester with a Rotating Up-Frequency Structure1
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作者 Huang Wenmei Xue Tianxiang +2 位作者 Feng Xiaobo Weng Ling Li Mingming 《电工技术学报》 EI CSCD 北大核心 2024年第24期7639-7650,共12页
A vibration energy harvester can harvest vibration energy in the environment and convert it into electrical energy to power the sensors in the Internet of Things.Human walking contains high-quality vibration energy,wh... A vibration energy harvester can harvest vibration energy in the environment and convert it into electrical energy to power the sensors in the Internet of Things.Human walking contains high-quality vibration energy,which serves as the energy source for vibration energy harvesters due to its abundant availability,high energy conversion efficiency,and environmental friendliness.It is difficult to harvest human walking vibration due to its low frequency.Converting the low-frequency vibration of human walking into high-frequency vibration has attracted attention.In previous studies,vibration energy harvesters typically increase frequency by raising excitation frequency or inducing free vibration.When walking frequency changes,the up-frequency method of raising the excitation frequency changes the voltage frequency,resulting in the best load resistance change and reducing the output power.The up-frequency method of inducing free vibration does not increase the external excitation frequency,which has relatively low output power.This paper designs a magnetostrictive vibration energy harvester with a rotating up-frequency structure.It consists of a rotating up-frequency structure,a magnetostrictive structure,coils,and bias magnets.The main body of the rotating up-frequency structure comprises a torsion bar and a flywheel with a dumbbell-shaped hole.The magnetostrictive structure includes four magnetostrictive metal sheets spliced by Galfenol and steel sheets.The torsion bar and flywheel interact to convert low-frequency linear vibration into rotating high-frequency excitation vibration of the flywheel.The flywheel plucks the magnetostrictive metal sheet with a high excitation frequency to generate free vibration.The vibration energy harvester increases the excitation frequency while inducing free vibration,which can effectively improve the output power.To characterize the excitation vibration and free vibration,based on the theory of Euler-Bernoulli beam theory,the vibration equation of the magnetostrictive metal sheet after being excited is given.According to the classical machine-magnetic coupling model and the Jiles-Atherton physical model,the relationship between stress and magnetization strength is derived.Combined with Faraday's law of electromagnetic induction,the distributed dynamic output voltage model is established.This model can predict the output voltage at different excitation frequencies.Based on this model,the mechanical-magnetic structural parameter optimization design is carried out.The parameters of the magnetostrictive metal sheet,the bias magnet,and the rotating up-frequency structure are determined.A comprehensive experimental system is established to test the device.The peak-to-peak voltage and output voltage signal by the proposed model are compared.The average relative deviation of the peak-to-peak voltage and the output voltage signal is 4.9%and 8.2%,respectively.The experimental results show that the output power is proportional to the excitation frequency.The optimum load resistance is always 800Ωas the excitation frequency changes,simplifying the impedance-matching process.The maximum peak-to-peak voltage of the device is 58.60 V,the maximum root mean square(RMS)voltage is 9.53 V,and the maximum RMS power is 56.20 mW.The magnetostrictive vibration energy harvester with a rotating up-frequency structure solves the problem of impedance matching,which improves the output power.The proposed distributed dynamic output voltage model can effectively predict the output characteristics.This study can provide structural and theoretical guidance for up-frequency structure vibration energy harvesters for human walking vibration. 展开更多
关键词 Vibration energy harvester MAGNETOSTRICTIVE rotating up-frequency dynamic model free vibration
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Pose prediction based on dynamic modeling and virtual prototype simulation of shield tunnelling machine
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作者 JIN Da-long WANG Xu-yang +2 位作者 YUAN Da-jun LI Xiu-dong DU Chang-yan 《Journal of Central South University》 CSCD 2024年第11期3854-3867,共14页
Compared with traditional feedback control,predictive control can eliminate the lag of pose control and avoid the snakelike motion of shield machines.Therefore,a shield pose prediction model was proposed based on dyna... Compared with traditional feedback control,predictive control can eliminate the lag of pose control and avoid the snakelike motion of shield machines.Therefore,a shield pose prediction model was proposed based on dynamic modeling.Firstly,the dynamic equations of shield thrust system were established to clarify the relationship between force and movement of shield machine.Secondly,an analytical model was proposed to predict future multistep pose of the shield machine.Finally,a virtual prototype model was developed to simulate the dynamic behavior of the shield machine and validate the accuracy of the proposed pose prediction method.Results reveal that the model proposed can predict the shield pose with high accuracy,which can provide a decision basis whether for manual or automatic control of shield pose. 展开更多
关键词 shield machine motion trajectory dynamic modeling virtual prototype pose prediction
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基于一般性动力学建模的多电机复合同步控制 被引量:2
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作者 谢斌 雷力 +1 位作者 王在相 李叶松 《中国电机工程学报》 北大核心 2025年第7期2821-2831,I0033,共12页
多电机同步系统广泛应用于精密制造领域,但是多样化系统结构与差异化同步控制需求,为高通用性同步控制策略设计带来了困难。为克服这些问题,该文建立多电机同步系统的一般性动力学模型,以统一形式的数学模型描述多样化同步控制问题;通... 多电机同步系统广泛应用于精密制造领域,但是多样化系统结构与差异化同步控制需求,为高通用性同步控制策略设计带来了困难。为克服这些问题,该文建立多电机同步系统的一般性动力学模型,以统一形式的数学模型描述多样化同步控制问题;通过基于运动学的坐标变换,揭示动力学模型内部复杂耦合关系及在耦合效应影响下的同步误差形成机理;通过提出运动解耦设计方法,精确补偿驱动轴与同步轴之间动力学特性差异,并实现系统解耦;基于已解耦系统设计反馈形式的运动跟踪控制器提升系统实时同步性能。仿真与实验结果表明,依据一般性动力学建模分析提出的复合同步控制策略具有明确的可解释性,能够有效提高多电机同步控制性能。 展开更多
关键词 多电机同步 动力学建模 耦合系统 同步控制 解耦控制
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