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基于MC-LADRC的水空两栖倾转多旋翼无人船水面起飞控制方法
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作者 沈跃 刘铭晖 +1 位作者 沈亚运 刘慧 《农业机械学报》 北大核心 2025年第6期608-617,共10页
水空两栖倾转多旋翼无人船在多鱼塘环境进行水空跨域作业时受到复杂多变的水面流体力影响,导致船体姿态和飞行高度易发生较大波动。为了提高无人船水面起飞时的姿态稳定性,提出了一种基于模型补偿的线性自抗扰水面起飞控制方法。首先对... 水空两栖倾转多旋翼无人船在多鱼塘环境进行水空跨域作业时受到复杂多变的水面流体力影响,导致船体姿态和飞行高度易发生较大波动。为了提高无人船水面起飞时的姿态稳定性,提出了一种基于模型补偿的线性自抗扰水面起飞控制方法。首先对无人船多模态进行详细的动力学建模;其次考虑水面起飞过程的姿态变化,建立了基于无人船实时姿态的水面张力估算模型、浮力估算模型;最后设计了基于模型补偿的线性自抗扰控制器。仿真结果表明,本文方法较PID算法横滚方向收敛时间减少66.7%,波动减少98.3%;在无人船前进(x轴)方向收敛时间减少34.0%;高度收敛时间减少41.2%,波动减少80.0%。实验结果表明,无人船实现了飞行高度为1.2 m时,横滚角波动小于3°,俯仰角波动及偏航角波动小于2°的水面起飞。该研究提出的控制算法有效提高了水空两栖倾转多旋翼无人船在水空跨域过程中的安全性和抗扰能力。 展开更多
关键词 倾转多旋翼无人船 水面起飞控制 线性自抗扰 模型补偿
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基于LADRC的水下机器人平面粘附策略
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作者 李宗刚 赵锐 +1 位作者 王超 夏广庆 《兵器装备工程学报》 北大核心 2025年第2期211-219,共9页
考虑到水下机器人粘附在目标平台的过程中,需沿期望轨迹运动并精确调整姿态以保证粘附过程的可靠性和稳定性问题,设计了一种结合粘附策略的LADRC轨迹跟踪控制方法。首先,结合仿生水凝胶吸盘设计了水下粘附机器人,并建立ROV动力学和运动... 考虑到水下机器人粘附在目标平台的过程中,需沿期望轨迹运动并精确调整姿态以保证粘附过程的可靠性和稳定性问题,设计了一种结合粘附策略的LADRC轨迹跟踪控制方法。首先,结合仿生水凝胶吸盘设计了水下粘附机器人,并建立ROV动力学和运动学模型。其次,提出水下机器人粘附在目标平台上的控制策略,设计LADRC控制器对ROV在纵垂面内的位姿进行精确控制。在实现精确轨迹跟踪基础上,按照ROV与目标平台之间的距离调整纵倾角的变化范围。仿真结果表明:所设计的控制器具有较好的鲁棒性能,能够实现对纵垂面轨迹的精确跟踪且纵倾角变化范围远小于±5°。实验结果表明:本文中使用的仿生水凝胶吸盘能够保证ROV可靠地粘附在目标平台上,所设计的控制器能够使ROV按照所设定的期望轨迹运行,且纵倾角始终保持在±5°的范围内变化,进而说明了实际作业环境中所提粘附策略的可行性。 展开更多
关键词 ROV ladrc 粘附 水凝胶 阵列式吸盘 轨迹跟踪
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双PWM变流器飞轮系统母线电压LADRC二次控制策略 被引量:2
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作者 魏乐 周子宇 +1 位作者 房方 王冰玉 《太阳能学报》 北大核心 2025年第1期242-250,共9页
提出一种基于二阶线性自抗扰控制(LADRC)的飞轮储能系统直流母线电压二次控制策略来应对飞轮储能系统频繁充放电切换带来的母线电压波动问题,其将母线电压及微分值分别视为状态变量,负载功率、参数不确定性等内外干扰视为扩展状态量进... 提出一种基于二阶线性自抗扰控制(LADRC)的飞轮储能系统直流母线电压二次控制策略来应对飞轮储能系统频繁充放电切换带来的母线电压波动问题,其将母线电压及微分值分别视为状态变量,负载功率、参数不确定性等内外干扰视为扩展状态量进行扰动观测器设计。该策略能将工况切换造成电压波动的观测扰动量实时补偿至控制量中,实现扰动补偿。加入二次控制解决LADRC面对非常值扰动会存在稳态误差的问题,保证飞轮储能系统在充放能切换过程中母线电压具备较好的快速响应和抗干扰性能的同时实现无差控制。最后通过仿真验证了所提策略的有效性。 展开更多
关键词 飞轮 储能 整流电路 电压控制 线性自抗扰控制 二次控制
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基于改进型LADRC的直驱风机次同步振荡抑制策略
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作者 曹炯琼 张达敏 +2 位作者 曾汉超 张强 姚文熙 《智慧电力》 北大核心 2025年第4期62-70,共9页
为抑制直驱风机(D-PSMG)并网引起的次同步振荡(SSO)问题,提出一种网侧变流器电流内环改用改进型线性自抗扰控制(LADRC)的抑制策略。首先建立D-PSMG数学模型,分析LADRC抑制SSO的原理及不足。在此基础上,在线性扩张状态观测器(LESO)中增... 为抑制直驱风机(D-PSMG)并网引起的次同步振荡(SSO)问题,提出一种网侧变流器电流内环改用改进型线性自抗扰控制(LADRC)的抑制策略。首先建立D-PSMG数学模型,分析LADRC抑制SSO的原理及不足。在此基础上,在线性扩张状态观测器(LESO)中增加超前相位环节,提高LESO扰动观测能力;同时引入模糊控制与线性误差反馈率(LSEF)结合,提高控制器适应性。然后对改进型LADRC的性能进行分析,结果表明,改进型LADRC在中低频段的扰动抑制能力增强。最后,仿真与半实物验证表明,相较传统LADRC,改进型LADRC具备更强鲁棒性和稳态性能,并网电流THD由2.83%降至1.34%,且有效抑制SSO。 展开更多
关键词 直驱风机 次同步振荡 ladrc 串联超前校正 模糊控制
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基于改进重复控制+LADRC的PMSM电流谐波抑制策略 被引量:1
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作者 康尔良 李公达 董新宝 《电机与控制学报》 北大核心 2025年第7期96-107,共12页
电流环是实现高精度永磁同步电机(PMSM)驱动的关键,然而PMSM驱动器的电流回路中存在很多电流谐波,降低了PMSM驱动器的性能。为抑制这些谐波,本文提出一种基于自抗扰控制(ADRC)+改进重复控制的PMSM矢量控制方案。首先,分析了PMSM电流谐... 电流环是实现高精度永磁同步电机(PMSM)驱动的关键,然而PMSM驱动器的电流回路中存在很多电流谐波,降低了PMSM驱动器的性能。为抑制这些谐波,本文提出一种基于自抗扰控制(ADRC)+改进重复控制的PMSM矢量控制方案。首先,分析了PMSM电流谐波产生来源,同时引入线性自抗扰控制(LADRC)抑制直流扰动;其次,提出一种改进重复控制的奇次谐波重复控制器,将其与LADRC并联并分析其稳定性。针对传统重复控制采样频率与外部信号电流谐波频率比值不为整数时导致的频率偏移问题,引入无限脉冲响应滤波器(IIR)对频率比值分数部分构成的延时环节进行逼近,进一步减小电流谐波。最后,通过仿真和实验验证,所提出的控制方法能对电流谐波进行有效抑制。 展开更多
关键词 永磁同步电机 自抗扰控制 重复控制 电流谐波抑制 无限脉冲响应滤波器
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基于LADRC算法的电动液压能源系统高效控制研究
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作者 袁若丹 陈勇 吴红 《机床与液压》 北大核心 2025年第17期127-134,共8页
针对电动液压能源系统在复杂工况下的效率优化与控制性能提升问题,设计一种兼具快速动态响应与强抗干扰能力的三环控制算法,以实现系统在全任务剖面内的高效稳定运行。采用三环复合协同控制策略:电流环采用比例-积分-微分(PID)控制算法... 针对电动液压能源系统在复杂工况下的效率优化与控制性能提升问题,设计一种兼具快速动态响应与强抗干扰能力的三环控制算法,以实现系统在全任务剖面内的高效稳定运行。采用三环复合协同控制策略:电流环采用比例-积分-微分(PID)控制算法,利用其参数调节便捷性与快速跟踪特性,确保电流及时响应;速度环与压力环引入线性自抗扰控制(LADRC),通过扩张状态观测器实时估计并补偿系统内外扰动,提升系统在不同工况下的鲁棒性和抗干扰能力。以一台21 kW的电动液压泵为研究对象,建立三环PID控制和三环复合协同控制对比仿真模型,通过模拟典型单一工况及全任务剖面运行过程,对所提控制策略的性能进行验证。仿真结果表明:所提控制策略在单一工况下,系统响应快速且无超调;在全任务剖面内实现了系统的高效率运行,其整体效率较三环PID控制提升0.44%~4.90%,有效验证了该控制方案的优越性。 展开更多
关键词 ladrc算法 电动液压能源系统 永磁同步电机 效率
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燃料电池空气系统LADRC-SMC复合控制策略研究
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作者 田韶鹏 丁康康 王龙 《重庆理工大学学报(自然科学)》 北大核心 2025年第4期42-49,共8页
针对质子交换膜燃料电池(proton exchange membrane fuel cell,PEMFC)空气系统优化控制中过氧比(oxygen excess ratio,OER)跟踪速度慢、抖振明显的问题,提出一种集成模糊扩展状态观测器的二阶线性自抗扰与滑模相耦合的控制算法。考虑PE... 针对质子交换膜燃料电池(proton exchange membrane fuel cell,PEMFC)空气系统优化控制中过氧比(oxygen excess ratio,OER)跟踪速度慢、抖振明显的问题,提出一种集成模糊扩展状态观测器的二阶线性自抗扰与滑模相耦合的控制算法。考虑PEMFC系统动态特性,构建面向控制的四阶状态空间模型。设计线性自抗扰与滑模耦合控制器,并在此基础上提出一种利用模糊控制改进的扩张状态观测器对扰动进行观测,使OER平稳迅速地接近最优值。仿真结果表明:在可量化加权评价体系下,所提出的控制策略与传统PID控制方法、模糊PID控制方法相比,控制效果得分分别提升19.2%和10.9%,有助于提高电流扰动下的控制精度和抑制干扰的能力。 展开更多
关键词 燃料电池 氧气过量比 控制系统 自抗扰控制 滑模控制
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基于改进LADRC-PI双闭环控制的单相光伏逆变器控制策略研究 被引量:2
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作者 刘道生 宋忠文 +1 位作者 熊世豪 王仕会 《电力系统保护与控制》 北大核心 2025年第9期82-92,共11页
在光伏发电控制领域中,光伏逆变器控制作为重要的一环,其双闭环控制中比例积分(proportional integral,PI)等线性化控制方式在电压外环电流内环中得到广泛应用。然而传统PI等线性化控制方式没有考虑光伏逆变器系统的非线性特性,在此控... 在光伏发电控制领域中,光伏逆变器控制作为重要的一环,其双闭环控制中比例积分(proportional integral,PI)等线性化控制方式在电压外环电流内环中得到广泛应用。然而传统PI等线性化控制方式没有考虑光伏逆变器系统的非线性特性,在此控制下逆变器的动静态性能和鲁棒性较差。提出一种改进线性自抗扰控制器(linearactive disturbance rejection control,LADRC)和PI控制相结合的双闭环控制策略。为避免光伏逆变器系统振荡,提高系统稳定性,提出了将输出误差补偿项加入线性状态误差反馈控制律中的改进LADRC,并将其应用于双闭环控制的电压外环中,电流内环使用PI控制。然后,经过参数整定和控制器性能分析,实现对1.2 kW单相光伏逆变器系统的控制。在Matlab/Simulink中建模仿真,分析改进LADRC-PI控制策略对单相光伏逆变器性能的影响。仿真结果表明,相较于双闭环PI控制,改进LADRC-PI双闭环控制的单相光伏逆变器系统稳定性较好,系统响应速度快,具有更好的动静态性能和鲁棒性。 展开更多
关键词 光伏逆变器 线性自抗扰控制器 线性状态误差反馈律 超调量 系统响应
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基于IGWO-LADRC的电动叉车液压伺服系统控制策略研究
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作者 郭征 吴静波 +2 位作者 郭志军 杨月飞 王红垚 《机床与液压》 北大核心 2025年第16期144-150,共7页
针对传统电动叉车液压系统因恒定泵速和阀控调节方式导致的能源浪费和效率低等问题,提出一种基于变转速泵的液压伺服系统优化方案。为提升系统的鲁棒性与自适应能力,采用线性自抗扰控制器(LADRC)对系统性能进行优化,并结合改进线性收敛... 针对传统电动叉车液压系统因恒定泵速和阀控调节方式导致的能源浪费和效率低等问题,提出一种基于变转速泵的液压伺服系统优化方案。为提升系统的鲁棒性与自适应能力,采用线性自抗扰控制器(LADRC)对系统性能进行优化,并结合改进线性收敛因子、位置更新策略以及适应度函数的灰狼优化算法(IGWO)实现控制参数的自适应调整,克服传统LADRC参数依赖人工整定的问题。为验证所提控制策略的有效性,通过AMESim中建立的液压系统物理模型与MATLAB/Simulink中构建的IGWO-LADRC控制策略模型进行联合仿真试验。仿真结果表明:相比传统阀控系统和PID控制的泵控伺服系统,所提基于IGWO-LADRC的泵控伺服系将跟踪误差控制在0.002 m以内,远低于阀控系统的0.02 m和PID泵控系统的0.054 m,实现了更精准的位置跟踪。同时通过实时调节伺服电机的转速,系统能够精确控制定量泵输出的流量和压力,从而在完成相同作业任务时,将泵输出功率从18 kW降低至5.2 kW以内,液压系统能量利用率提升35%,显著提高了电动叉车工作装置在作业过程中的能量利用效率。 展开更多
关键词 电动叉车 液压系统 泵控伺服系统 线性自抗扰控制(ladrc) 节能
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Fault-observer-based iterative learning model predictive controller for trajectory tracking of hypersonic vehicles 被引量:1
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作者 CUI Peng GAO Changsheng AN Ruoming 《Journal of Systems Engineering and Electronics》 2025年第3期803-813,共11页
This work proposes the application of an iterative learning model predictive control(ILMPC)approach based on an adaptive fault observer(FOBILMPC)for fault-tolerant control and trajectory tracking in air-breathing hype... This work proposes the application of an iterative learning model predictive control(ILMPC)approach based on an adaptive fault observer(FOBILMPC)for fault-tolerant control and trajectory tracking in air-breathing hypersonic vehicles.In order to increase the control amount,this online control legislation makes use of model predictive control(MPC)that is based on the concept of iterative learning control(ILC).By using offline data to decrease the linearized model’s faults,the strategy may effectively increase the robustness of the control system and guarantee that disturbances can be suppressed.An adaptive fault observer is created based on the suggested ILMPC approach in order to enhance overall fault tolerance by estimating and compensating for actuator disturbance and fault degree.During the derivation process,a linearized model of longitudinal dynamics is established.The suggested ILMPC approach is likely to be used in the design of hypersonic vehicle control systems since numerical simulations have demonstrated that it can decrease tracking error and speed up convergence when compared to the offline controller. 展开更多
关键词 hypersonic vehicle actuator fault tracking control iterative learning control(ILC) model predictive control(MPC) fault observer
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Fixed-time Target-guided Coordinate Control of Unmanned Surface Vehicles Based on Dynamic Surface Control
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作者 LI Chao−yi XU Hai−xiang +2 位作者 YU Wen−zhao DU Zhe DING Ya−nan 《船舶力学》 北大核心 2025年第6期849-862,共14页
This paper presents an investigation on the target-guided coordinated control(TACC)of unmanned surface vehicles(USVs).In the scenario of tracking non-cooperative targets,the status information of the target can only b... This paper presents an investigation on the target-guided coordinated control(TACC)of unmanned surface vehicles(USVs).In the scenario of tracking non-cooperative targets,the status information of the target can only be obtained by some USVs.In order to achieve semi-encirclement tracking of noncooperative targets under maritime security conditions,a fixed-time tracking control method based on dynamic surface control(DSC)is proposed in this paper.Firstly,a novel TACC architecture with decoupled kinematic control law and decoupled kinetic control law was designed to reduce the complexity of control system design.Secondly,the proposed DSC-based target-guided kinematic control law including tracking points pre-allocation strategy and sigmoid artificial potential functions(SigAPFs)can avoid collisions during tracking process and optimize kinematic control output.Finally,a fixed-time TACC system was proposed to achieve fast convergence of kinematic and kinetics errors.The effectiveness of the proposed TACC approach in improving target tracking safety and reducing control output chattering was verified by simulation comparison results. 展开更多
关键词 unmanned surface vehicle distributed control target-guided coordinate control fixed-time convergence dynamic surface control
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Effective implementation of controlled blasting methodology during excavation of hard rock in the close proximity of earthen dam and tunnel 被引量:1
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作者 Prakash K.Palei Vijay K.Ghodake +5 位作者 S.Santhosh Kumar R.S.Gurjar Chaman Singh M.Meena Rizwan Ali R.S.Kankara 《Defence Technology(防务技术)》 2025年第6期306-316,共11页
The present technical paper outlines the details of the controlled blasting techniques used to optimize blasting pattern for excavation of hard rock near the Bhira Earthen Dam in Maharashtra,India.In this connection,a... The present technical paper outlines the details of the controlled blasting techniques used to optimize blasting pattern for excavation of hard rock near the Bhira Earthen Dam in Maharashtra,India.In this connection,a series of experimental blasts were conducted by adjusting various blast design parameters at project site.The safe charge weight per delay was kept between 0.125 and 0.375 kg.The outcomes of these experimental blasts were analyzed to recommend optimized blasting patterns and methods for the overall excavation process during actual blasting operations.Blast design parameters,including the maximum quantity of explosive per delay,hole depth,burden and spacing between holes were optimized by using a site-specific attenuation equation,taking into account the proximity of the dam and tunnel from the blasting area.Peak particle velocity(PPV)level of 10 mm/s and 50 mm/s respectively were adopted as the safe vibration level for ensuring safety of the Bhira Earthen Dam and the nearby tunnel from the adverse effects of blast vibrations by analyzing the dominant frequency of ground vibrations observed and also by reviewing various international standards.Frequency of the ground vibrations observed on the dam and tunnel from majority of the blasts was found to be more than 10 Hz and 50 Hz respectively.During the entire period of blasting,the blast vibrations were recorded to be far lower than the safe vibration level set for these structures.Maximum Vibration level of about 0.8 mm/s and 35 mm/s were observed on dam and tunnel respectively which are far lower than the safe vibration level adopted for these structures.Hence,the entire excavation work was completed successfully and safely,without endangering the safety of dam or tunnel. 展开更多
关键词 controlled blasting Civil structure Ground vibration Attenuation relation
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Temperature control for liquid-cooled fuel cells based on fuzzy logic and variable-gain generalized supertwisting algorithm
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作者 CHEN Lin JIA Zhi-huan +1 位作者 DING Tian-wei GAO Jin-wu 《控制理论与应用》 北大核心 2025年第8期1596-1605,共10页
The liquid cooling system(LCS)of fuel cells is challenged by significant time delays,model uncertainties,pump and fan coupling,and frequent disturbances,leading to overshoot and control oscillations that degrade tempe... The liquid cooling system(LCS)of fuel cells is challenged by significant time delays,model uncertainties,pump and fan coupling,and frequent disturbances,leading to overshoot and control oscillations that degrade temperature regulation performance.To address these challenges,we propose a composite control scheme combining fuzzy logic and a variable-gain generalized supertwisting algorithm(VG-GSTA).Firstly,a one-dimensional(1D)fuzzy logic controler(FLC)for the pump ensures stable coolant flow,while a two-dimensional(2D)FLC for the fan regulates the stack temperature near the reference value.The VG-GSTA is then introduced to eliminate steady-state errors,offering resistance to disturbances and minimizing control oscillations.The equilibrium optimizer is used to fine-tune VG-GSTA parameters.Co-simulation verifies the effectiveness of our method,demonstrating its advantages in terms of disturbance immunity,overshoot suppression,tracking accuracy and response speed. 展开更多
关键词 liquid-cooled fuel cell temperature control generalized supertwisting algorithm fuzzy control equilibrium optimizer
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Fault-tolerant control for diesel engine air path system via sliding mode surface
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作者 WU Wen-jie ZHANG Yi-xin +4 位作者 WANG Xing-jian WANG Shao-ping ZHANG Jian ZHENG Wei TAO Mo 《控制理论与应用》 北大核心 2025年第8期1570-1577,共8页
The operating environment of the diesel engine air path system is complex and may be affected by external random disturbances.Potentially leading to faults.This paper addresses the fault-tolerant control problem of th... The operating environment of the diesel engine air path system is complex and may be affected by external random disturbances.Potentially leading to faults.This paper addresses the fault-tolerant control problem of the diesel engine air path system,assuming that the system may simultaneously be affected by actuator faults and external random disturbances,a disturbance observer-based sliding mode controller is designed.Through the linear matrix inequality technique for solving observer and controller gains,optimal gain matrices can be obtained,eliminating the manual adjustment process of controller parameters and reducing the chattering phenomenon of the sliding mode surface.Finally,the effectiveness of the proposed method is verified through simulation analysis. 展开更多
关键词 disel engine air path fault-tolerant control sliding mode control disturbance observer
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Graded density impactor design via machine learning and numerical simulation:Achieve controllable stress and strain rate 被引量:1
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作者 Yahui Huang Ruizhi Zhang +6 位作者 Shuaixiong Liu Jian Peng Yong Liu Han Chen Jian Zhang Guoqiang Luo Qiang Shen 《Defence Technology(防务技术)》 2025年第9期262-273,共12页
The graded density impactor(GDI)dynamic loading technique is crucial for acquiring the dynamic physical property parameters of materials used in weapons.The accuracy and timeliness of GDI structural design are key to ... The graded density impactor(GDI)dynamic loading technique is crucial for acquiring the dynamic physical property parameters of materials used in weapons.The accuracy and timeliness of GDI structural design are key to achieving controllable stress-strain rate loading.In this study,we have,for the first time,combined one-dimensional fluid computational software with machine learning methods.We first elucidated the mechanisms by which GDI structures control stress and strain rates.Subsequently,we constructed a machine learning model to create a structure-property response surface.The results show that altering the loading velocity and interlayer thickness has a pronounced regulatory effect on stress and strain rates.In contrast,the impedance distribution index and target thickness have less significant effects on stress regulation,although there is a matching relationship between target thickness and interlayer thickness.Compared with traditional design methods,the machine learning approach offers a10^(4)—10^(5)times increase in efficiency and the potential to achieve a global optimum,holding promise for guiding the design of GDI. 展开更多
关键词 Machine learning Numerical simulation Graded density impactor controllable stress-strain rate loading Response surface methodology
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Projective synchronization control and simulation of drive system and response network
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作者 LI De-kui 《兰州大学学报(自然科学版)》 北大核心 2025年第2期208-214,共7页
Projective synchronization problems of a drive system and a particular response network were investigated,where the drive system is an arbitrary system with n+1 dimensions;it may be a linear or nonlinear system,and ev... Projective synchronization problems of a drive system and a particular response network were investigated,where the drive system is an arbitrary system with n+1 dimensions;it may be a linear or nonlinear system,and even a chaotic or hyperchaotic system,the response network is complex system coupled by N nodes,and every node is showed by the approximately linear part of the drive system.Only controlling any one node of the response network by designed controller can achieve the projective synchronization.Some numerical examples were employed to verify the effectiveness and correctness of the designed controller. 展开更多
关键词 pinning control projective synchronization drive system response network
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Research on a safety-critical architecture of large commercial aircraft fly-by-wire flight control system
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作者 TANG Zhishuai TANG Xianglong +2 位作者 JIN Ye CHENG Dansong LIU Xinghua 《Journal of Systems Engineering and Electronics》 2025年第5期1296-1305,共10页
In view of the deficiencies in aspects such as failure rate requirements and analysis assumptions of advisory circular,this paper investigates the sources of high safety requirements,and the top-down design method for... In view of the deficiencies in aspects such as failure rate requirements and analysis assumptions of advisory circular,this paper investigates the sources of high safety requirements,and the top-down design method for the flight control system life cycle.Correspondingly,measures are proposed,including enhancing the safety target value to 10^(−10)per flight hour and implementing development assurance.In view of the shortcomings of mainstream aircraft flight control systems,such as weak backup capability and complex fault reconfiguration logic,improvements have been made to the system’s operating modes,control channel allocation,and common mode failure mitigation schemes based on the existing flight control architecture.The flight control design trends and philosophies have been analyzed.A flight control system architecture scheme is proposed,which includes three operating modes and multi-level voters/monitors,three main control channels,and a backup system independent of the main control system,which has been confirmed through functional modeling simulations.The proposed method plays an important role in the architecture design of safety-critical flight control system. 展开更多
关键词 large aircraft fly-by-wire flight control system SAFETY common mode failure backup control
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Observed-based adaptive neural tracking control for nonlinear systems with unknown control directions and input delay
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作者 DENG Yuxuan WANG Qingling 《Journal of Systems Engineering and Electronics》 2025年第1期269-279,共11页
Enhancing the stability and performance of practical control systems in the presence of nonlinearity,time delay,and uncertainty remains a significant challenge.Particularly,a class of strict-feedback nonlinear uncerta... Enhancing the stability and performance of practical control systems in the presence of nonlinearity,time delay,and uncertainty remains a significant challenge.Particularly,a class of strict-feedback nonlinear uncertain systems characterized by unknown control directions and time-varying input delay lacks comprehensive solutions.In this paper,we propose an observerbased adaptive tracking controller to address this gap.Neural networks are utilized to handle uncertainty,and a unique coordinate transformation is employed to untangle the coupling between input delay and unknown control directions.Subsequently,a new auxiliary signal counters the impact of time-varying input delay,while a Nussbaum function is introduced to solve the problem of unknown control directions.The leverage of an advanced dynamic surface control technique avoids the“complexity explosion”and reduces boundary layer errors.Synthesizing these techniques ensures that all the closed-loop signals are semi-globally uniformly ultimately bounded(SGUUB),and the tracking error converges to a small region around the origin by selecting suitable parameters.Simulation examples are provided to demonstrate the feasibility of the proposed approach. 展开更多
关键词 adaptive neural network dynamic surface control unknown control direction input delay
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Distributed event-triggered control for UAV swarm target fencing with network connectivity preservation and collision avoidance
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作者 Xiuxia Yang Hao Yu +1 位作者 Yi Zhang Wenqiang Yao 《Defence Technology(防务技术)》 2025年第8期412-427,共16页
This paper proposes a distributed event-triggered control(ETC)framework to address cooperative target fencing challenges in UAV swarm.The proposed architecture eliminates the reliance on preset formation parameters wh... This paper proposes a distributed event-triggered control(ETC)framework to address cooperative target fencing challenges in UAV swarm.The proposed architecture eliminates the reliance on preset formation parameters while achieving multi-objective cooperative control for target fencing,network connectivity preservation,collision avoidance,and communication efficiency optimization.Firstly,a differential state observer is constructed to obtain the target's unmeasurable states.Secondly,leveraging swarm selforganization principles,a geometric-constraint-free distributed fencing controller is designed by integrating potential field methods with consensus theory.The controller dynamically adjusts inter-UAV distances via single potential function,enabling coordinated optimization of persistent network connectivity and collision-free motion during target fencing.Thirdly,a dual-threshold ETC mechanism based on velocity consensus deviation and fencing error is proposed,which can be triggered based on task features to dynamically adjust the communication frequency,significantly reduce the communication burden and exclude Zeno behavior.Theoretical analysis demonstrates the stability of closed-loop systems.Multi-scenario simulations show that the proposed method can achieve robust fencing under target maneuverability,partial UAV failures,and communication disturbances. 展开更多
关键词 Dual-threshold ETC mechanism UAV swarm Cooperative control Distributed control Target fencing Differential state observer
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Modeling and sliding mode control based on inverse compensation of piezo-positioning system
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作者 LI Zhi-bin XIN Yuan-ze +1 位作者 ZHANG Jian-qiang SUN Chong-shang 《中国光学(中英文)》 北大核心 2025年第1期170-185,共16页
In order to enhance the control performance of piezo-positioning system,the influence of hysteresis characteristics and its compensation method are studied.Hammerstein model is used to represent the dynamic hysteresis... In order to enhance the control performance of piezo-positioning system,the influence of hysteresis characteristics and its compensation method are studied.Hammerstein model is used to represent the dynamic hysteresis nonlinear characteristics of piezo-positioning actuator.The static nonlinear part and dynamic linear part of the Hammerstein model are represented by models obtained through the Prandtl-Ishlinskii(PI)model and Hankel matrix system identification method,respectively.This model demonstrates good generalization capability for typical input frequencies below 200 Hz.A sliding mode inverse compensation tracking control strategy based on P-I inverse model and integral augmentation is proposed.Experimental results show that compared with PID inverse compensation control and sliding mode control without inverse compensation,the sliding mode inverse compensation control has a more ideal step response and no overshoot,moreover,the settling time is only 6.2 ms.In the frequency domain,the system closed-loop tracking bandwidth reaches 119.9 Hz,and the disturbance rejection bandwidth reaches 86.2 Hz.The proposed control strategy can effectively compensate the hysteresis nonlinearity,and improve the tracking accuracy and antidisturbance capability of piezo-positioning system. 展开更多
关键词 piezo-positioning system hysteresis nonlinearity Hammerstein model Prandtl-Ishlinskii(P-I)model system identification sliding mode control
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