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高速开关式先导滑阀非对称阀口与PWM控制信号适配关系研究
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作者 陈雨欣 魏列江 +2 位作者 单乐 谭泽华 强彦 《机床与液压》 北大核心 2026年第2期155-161,共7页
为提高PWM占空比可控范围,获得稳定的主阀控制腔的控制压力,提出一种先导级高速开关式滑阀非对称阀口面积比与PWM控制信号的匹配方法。对主阀控制腔内压力控制机制进行分析,建立先导滑阀PWM占空比与主阀控制腔平均压力的数学模型。利用M... 为提高PWM占空比可控范围,获得稳定的主阀控制腔的控制压力,提出一种先导级高速开关式滑阀非对称阀口面积比与PWM控制信号的匹配方法。对主阀控制腔内压力控制机制进行分析,建立先导滑阀PWM占空比与主阀控制腔平均压力的数学模型。利用MATLAB/Simulink搭建系统仿真模型,分析不同进/回油阀口面积比以及不同PWM频率下,占空比与主阀控制腔平均压力的关系。最后,搭建实验测试台架,通过对比阀口面积比为1∶1和4∶1时的仿真与实验结果,验证所提方法的可行性与模型的准确性。结果表明:主阀控制腔平均压力与先导滑阀PWM占空比之间呈线性关系;增大先导滑阀进、回油阀口面积比,能有效拓宽PWM占空比的可控范围;提高PWM频率能改善控制腔压力调节的线性度,但不会改变占空比的可控范围。在主阀阀芯动作压力1.25 MPa下,先导滑阀阀口面积比为1∶1和4∶1的PWM控制信号可控范围仿真结果分别为50%~90%和42.29%~90%,实验结果分别为50.88%~90%和43.87%~90%,与仿真结果的误差在1.6%以内,验证了该控制方法的可行性。 展开更多
关键词 高速开关式先导滑阀 非对称阀口 pwm控制信号 适配关系 占空比 压力控制
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基于快速终端动态滑模的三相电压型PWM整流器控制
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作者 张缘 樊春玲 张春堂 《电子测量技术》 北大核心 2026年第2期37-44,共8页
传统滑模控制在三相电压型PWM整流器应用中,由于其固有的不连续切换特性导致直流母线电压出现高频振荡现象,难以获得理想控制效果。因此本文提出一种外环快速终端动态滑模控制和内环前馈解耦PI控制相结合的双闭环控制策略。首先内环采... 传统滑模控制在三相电压型PWM整流器应用中,由于其固有的不连续切换特性导致直流母线电压出现高频振荡现象,难以获得理想控制效果。因此本文提出一种外环快速终端动态滑模控制和内环前馈解耦PI控制相结合的双闭环控制策略。首先内环采用基于前馈解耦PI控制,消除数学模型中的耦合项,实现对电流波形的精确跟踪。其次外环通过将切换项转移到高阶微分环节,并引入快速终端滑模面,抑制系统抖振,提升动态性能,实现准确稳定的跟踪参考电压。最后基于Lyapunov稳定性理论对控制器进行了稳定性证明,并通过Simulink搭建仿真模型进行实验验证。结果表明:所提出策略有效抑制了滑模控制固有的抖振现象。系统启动阶段直流电压过冲仅有6.5 V,较传统PI控制电压差峰值降低92%,调节时间缩短91%。电压阶跃响应跟踪时间小于0.02 s,±50%额定负载阶跃扰动内,瞬态电压误差均小于±1%。该控制方法在确保高稳态精度的同时,兼具良好的动态响应性能。 展开更多
关键词 pwm整流器 动态滑模 快速终端滑模 非线性控制
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惯性同步控制三相PWM变换器的四象限控制特性分析及参数设计
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作者 郭子腾 王晗 +3 位作者 王富文 曹云峰 张建文 蔡旭 《上海交通大学学报》 北大核心 2026年第2期277-288,共12页
新能源发电单元构网的主流方案之一是脉冲宽度调制(PWM)变换器做惯性同步控制,但现有研究重点关注逆变器状态下的变换器控制特性,忽略了其四象限控制特性及系统控制参数设计方法.针对上述问题,首先,构建考虑预同步环节的惯性同步控制变... 新能源发电单元构网的主流方案之一是脉冲宽度调制(PWM)变换器做惯性同步控制,但现有研究重点关注逆变器状态下的变换器控制特性,忽略了其四象限控制特性及系统控制参数设计方法.针对上述问题,首先,构建考虑预同步环节的惯性同步控制变换器线性模型,推导直流电压-相角及无功功率-电压的频域解析表达式.然后,设计直流电压环路和无功功率环路的关键控制参数设计方法.最后,利用仿真和实验验证所提方法可行性,分析变换器的四象限控制特性及惯量支撑能力.结果表明:惯性同步控制变换器的直流电压环路与无功功率环路在四象限运行区间内强耦合,致使直流电压扰动引发无功功率显著波动;尽管其具备惯量支撑能力,但由于直流电容惯量较小,所以效果尚不明显.研究结果为下一步开展直流电压-无功解耦控制及惯量支撑能力增强控制方法研究奠定基础. 展开更多
关键词 脉冲宽度调制变换器 惯性同步控制 参数设计 控制特性
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基于PWM的WiFi智能恒温口罩设计
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作者 熊玥 杨君 +2 位作者 刘思贤 杨思豪 罗诗奕 《物联网技术》 2026年第6期111-115,共5页
针对传统口罩虽能有效过滤细菌病毒,却无法对空气进行加温的问题,设计一种基于PWM的高精度WiFi智能恒温口罩系统。该系统以STM32F407为核心控制器,集成DS18B20温度传感器、SFM3000流量传感器与柔性石墨烯加热片,构建了“感知-控制-执行... 针对传统口罩虽能有效过滤细菌病毒,却无法对空气进行加温的问题,设计一种基于PWM的高精度WiFi智能恒温口罩系统。该系统以STM32F407为核心控制器,集成DS18B20温度传感器、SFM3000流量传感器与柔性石墨烯加热片,构建了“感知-控制-执行-反馈”的闭环控制架构。通过融合多传感器数据,系统能够实时识别用户呼吸相位,并动态调整PID控制算法的输出,进而以高分辨率PWM波驱动加热片,实现吸入空气的快速升温与±0.5℃以内的精准恒温控制。此外,借助ESP8266模块,可以将温度、呼吸频率等数据上传至手机APP,实时显示与设置,显著优化了人机交互体验。所提系统在提升呼吸舒适度的同时,通过动态功耗管理与高效的硬件资源利用,确保了设备的续航能力与安全性能。 展开更多
关键词 pwm PID算法 WIFI STM32 高精度温控 人机交互
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Hybrid Controller for Steady Speed of Agricultural Machinery on Slopes
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作者 WU Caicong XU Haisong GAO Xingyu 《农业机械学报》 北大核心 2026年第2期416-426,共11页
Steady speed control of agricultural machinery can improve operating quality and efficiency.To address the impact of farmland slope variations on the speed stability of unmanned operation agricultural machinery,a hybr... Steady speed control of agricultural machinery can improve operating quality and efficiency.To address the impact of farmland slope variations on the speed stability of unmanned operation agricultural machinery,a hybrid control method was proposed.This method included a hybrid controller composed of a slope-based controller and a proportional-integral-derivative(PID)controller.The speed of agricultural machinery was influenced by longitudinal forces,which were divided into two parts:one part was slope-related forces and conventional resistance,and the other was hard-to-estimate forces,such as sliding friction.For the first part,a slope-based controller was designed;for the second part,a PID controller was implemented.By combining these two controllers,the system can dynamically adjust the throttle opening and the brake master cylinder pressure,ensuring steady speed travel on sloping farmland.Simulation tests at a target speed of 7 km/h demonstrated that the proposed controller maintained a stable speed,achieving a root mean square error of 0.13 km/h and a mean absolute percentage error of 1.6%.Field tests on a practical experimental platform validated the method’s effectiveness,with results showing consistent control performance across varying slope conditions.The proposed controller demonstrated superior control performance.Experimental data verified that this method can achieve precise control of the agricultural machinery’s movement speed,meeting the stability requirements for agricultural operations. 展开更多
关键词 farmland slope PID controller steady speed control agricultural machinery unmanned operation
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Prescribed-Time Active Disturbance Rejection Control for Electromagnetic Formation Flight Under Model Uncertainties and Disturbances
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作者 SHEN Xixi MENG Bin HU Jiangping 《空间控制技术与应用(中英文)》 北大核心 2026年第1期94-102,共9页
This study investigates prescribed-time position tracking control for electromagnetic satellite formations subject to model uncertainties and external disturbances.Using the Clohessy-Wiltshire equations as the relativ... This study investigates prescribed-time position tracking control for electromagnetic satellite formations subject to model uncertainties and external disturbances.Using the Clohessy-Wiltshire equations as the relative motion dynamics model,a prescribed time output feedback control strategy is proposed.A prescribed-time extended state observer is designed to estimate the relative velocity and external disturbances.The disturbance estimates are then used as the feedforward component of the controller.Building on this framework,a novel prescribed-time active disturbance rejection control strategy for position tracking is developed via a backstepping control design.The convergence of the extended state observer and the stability of the closed-loop system are rigorously analyzed using Lyapunov stability theory.Numerical simulations are performed to validate the effectiveness of the proposed controller. 展开更多
关键词 electromagnetic formation prescribed time active disturbance rejection control output feedback control
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三相PWM整流器启动超调阶梯电压抑制
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作者 邓道盛 陈鹏宇 《绵阳师范学院学报》 2026年第2期64-73,共10页
随着电力电子器件性能的提升,脉宽调制(PWM)整流器因其高功率因数和低谐波失真等优势,在新能源并网和工业变频驱动等领域得到广泛应用.然而,其启动阶段的输出电压超调问题仍是制约系统动态性能的关键瓶颈.为此,首先通过建立三相电压型PW... 随着电力电子器件性能的提升,脉宽调制(PWM)整流器因其高功率因数和低谐波失真等优势,在新能源并网和工业变频驱动等领域得到广泛应用.然而,其启动阶段的输出电压超调问题仍是制约系统动态性能的关键瓶颈.为此,首先通过建立三相电压型PWM整流器的状态空间方程,结合dq同步旋转坐标系变换,推导了系统的输入-输出数学模型;其次,基于MATLAB/Simulink平台构建了电压-电流双闭环控制系统仿真模型,并采用频域分析方法评估了传统控制策略的动态特性.为抑制启动超调,提出一种基于阶梯式参考电压跟踪的渐进整定策略,通过分段调节电压给定值实现平滑启动.仿真结果表明,与传统PI控制策略相比,所提方法将启动超调量从12.75%显著降低至0.8%,动态调节时间缩短约40%. 展开更多
关键词 pwm整流器 dq坐标变换 启动过电压 电压电流双闭环
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Robust current tracking control for three-phase grid-connected inverters with LCL filter
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作者 LIU Wei WU Ben +2 位作者 SUN Wei-jie XUE Ying CAI Feng-huang 《控制理论与应用》 北大核心 2026年第1期41-51,共11页
This article investigates the robust current tracking control problem of three-phase grid-connected inverters with LCL filter under external disturbance by a dynamic state feedback control method.First,this paper cons... This article investigates the robust current tracking control problem of three-phase grid-connected inverters with LCL filter under external disturbance by a dynamic state feedback control method.First,this paper constructs an internal model to learn the information of the states and input of the grid-connected inverter under steady state.Second,by utilizing the internal model principle,the paper turns the tracking control problem into the robust stabilization control problem based on some appropriate coordinate transformations.Then,The paper designs a dynamics state feedback control law to deal with this robust stabilization problem,and thus the solution of the robust current tracking control problem of three-phase grid-connected inverters can be obtained.This control method can ensure the asymptotic stability of the closedloop system.Finally,the paper illustrates the effectiveness of the proposed control approach through several groups of simulations,and compares it with the feedforward control method to verify the robustness of the proposed control method to uncertain parameters. 展开更多
关键词 grid-connected inverter internal model principle current tracking disturbance suppression robust control
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PID Steering Control Method of Agricultural Robot Based on Fusion of Particle Swarm Optimization and Genetic Algorithm
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作者 ZHAO Longlian ZHANG Jiachuang +2 位作者 LI Mei DONG Zhicheng LI Junhui 《农业机械学报》 北大核心 2026年第1期358-367,共10页
Aiming to solve the steering instability and hysteresis of agricultural robots in the process of movement,a fusion PID control method of particle swarm optimization(PSO)and genetic algorithm(GA)was proposed.The fusion... Aiming to solve the steering instability and hysteresis of agricultural robots in the process of movement,a fusion PID control method of particle swarm optimization(PSO)and genetic algorithm(GA)was proposed.The fusion algorithm took advantage of the fast optimization ability of PSO to optimize the population screening link of GA.The Simulink simulation results showed that the convergence of the fitness function of the fusion algorithm was accelerated,the system response adjustment time was reduced,and the overshoot was almost zero.Then the algorithm was applied to the steering test of agricultural robot in various scenes.After modeling the steering system of agricultural robot,the steering test results in the unloaded suspended state showed that the PID control based on fusion algorithm reduced the rise time,response adjustment time and overshoot of the system,and improved the response speed and stability of the system,compared with the artificial trial and error PID control and the PID control based on GA.The actual road steering test results showed that the PID control response rise time based on the fusion algorithm was the shortest,about 4.43 s.When the target pulse number was set to 100,the actual mean value in the steady-state regulation stage was about 102.9,which was the closest to the target value among the three control methods,and the overshoot was reduced at the same time.The steering test results under various scene states showed that the PID control based on the proposed fusion algorithm had good anti-interference ability,it can adapt to the changes of environment and load and improve the performance of the control system.It was effective in the steering control of agricultural robot.This method can provide a reference for the precise steering control of other robots. 展开更多
关键词 agricultural robot steering PID control particle swarm optimization algorithm genetic algorithm
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Multi-dynamic torque coordination control strategy for a power-split hybrid electric vehicle during mode shift
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作者 Kun Huang Weida Wang +2 位作者 Jiankang Cheng Chao Yang Changle Xiang 《Chinese Journal of Mechanical Engineering》 2026年第1期486-495,共10页
Mode shift is a special mechanism for a power-split hybrid electric vehicle(HEV)to realise electrically variable transmission,but the sudden change of equivalent inertia caused by topological configuration recombinati... Mode shift is a special mechanism for a power-split hybrid electric vehicle(HEV)to realise electrically variable transmission,but the sudden change of equivalent inertia caused by topological configuration recombination during mode shift induces a significant torque shock.Therefore,a smooth transient process,among other concerns,typically associated with this category of vehicles,is of great importance.The present research aims to introduce a novel control strategy to manage the dynamic torque of multiple power sources and therefore im-prove ride comfort.To this end,a dynamic model of the objective power-split HEV is first built.To resolve the contention between vehicle jerk and clutch friction loss,a model predictive control(MPC)combined with control allocation(CA)is then designed for the clutch-engaged phase.To reduce the torque fluctuation caused by the inertia torques of multiple power sources,a dynamic compensation control strategy(DCcs)that coordinates motorgenerator torque to compensate for the transition torque is proposed for the brake-disengaged phase.Finally,the proposed control strategy is validated by simulation and bench test,and results show great potential in reducing shift duration,torque variation,vehicle jerk and friction loss(the simulation results show decreases of 22%,39%,83%and 53%,and the experimental results show decreases of 21%,74%,77%,and 59%,re-spectively),thereby improving shift quality. 展开更多
关键词 Power-split hybrid electric vehicle Mode shift Model predictive control control allocation Dynamic compensation control
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A New Inversion-free Iterative Method for Solving the Nonlinear Matrix Equation and Its Application in Optimal Control
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作者 GAO Xiangyu XIE Weiwei ZHANG Lina 《应用数学》 北大核心 2026年第1期143-150,共8页
In this paper,we consider the maximal positive definite solution of the nonlinear matrix equation.By using the idea of Algorithm 2.1 in ZHANG(2013),a new inversion-free method with a stepsize parameter is proposed to ... In this paper,we consider the maximal positive definite solution of the nonlinear matrix equation.By using the idea of Algorithm 2.1 in ZHANG(2013),a new inversion-free method with a stepsize parameter is proposed to obtain the maximal positive definite solution of nonlinear matrix equation X+A^(*)X|^(-α)A=Q with the case 0<α≤1.Based on this method,a new iterative algorithm is developed,and its convergence proof is given.Finally,two numerical examples are provided to show the effectiveness of the proposed method. 展开更多
关键词 Nonlinear matrix equation Maximal positive definite solution Inversion-free iterative method Optimal control
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Constructions of Control Sequence Set for Hierarchical Access in Data Link Network
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作者 Niu Xianhua Ma Jiabei +3 位作者 Zhou Enzhi Wang Yaoxuan Zeng Bosen Li Zhiping 《China Communications》 2026年第1期67-80,共14页
As an important resource in data link,time slots should be strategically allocated to enhance transmission efficiency and resist eavesdropping,especially considering the tremendous increase in the number of nodes and ... As an important resource in data link,time slots should be strategically allocated to enhance transmission efficiency and resist eavesdropping,especially considering the tremendous increase in the number of nodes and diverse communication needs.It is crucial to design control sequences with robust randomness and conflict-freeness to properly address differentiated access control in data link.In this paper,we propose a hierarchical access control scheme based on control sequences to achieve high utilization of time slots and differentiated access control.A theoretical bound of the hierarchical control sequence set is derived to characterize the constraints on the parameters of the sequence set.Moreover,two classes of optimal hierarchical control sequence sets satisfying the theoretical bound are constructed,both of which enable the scheme to achieve maximum utilization of time slots.Compared with the fixed time slot allocation scheme,our scheme reduces the symbol error rate by up to 9%,which indicates a significant improvement in anti-interference and eavesdropping capabilities. 展开更多
关键词 control sequence data link hierarchical access control theoretical bound
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An intra-string distributed and inter-string decentralized control method for hybrid series-parallel microgrids
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作者 Xiaochao Hou Jiatong He +3 位作者 Changgeng Li Zexiong Wei Kai Sun Yunwei Li 《iEnergy》 2026年第1期30-42,共13页
The hybrid series-parallel microgrid attracts more attention by combining the advantages of both the series-stacked voltage and parallel-expanded capacity.Low-voltage distributed generations(DGs)are connected in serie... The hybrid series-parallel microgrid attracts more attention by combining the advantages of both the series-stacked voltage and parallel-expanded capacity.Low-voltage distributed generations(DGs)are connected in series to form the intra-string,and then multiple strings are interconnected in parallel.For the existing control strategies,both intra-string and inter-string depend on the centralized or distributed control with high communication reliance.It has limited scalability and redundancy under abnormal conditions.Alternatively,in this study,an intra-string distributed and inter-string decentralized control framework is proposed.Within the string,a few DGs close to the AC bus are the leaders to get the string power information and the rest DGs are the followers to acquire the synchronization information through the droop-based distributed consistency.Specifically,the output of the entire string has the active power−angular frequency(ω-P)droop characteristic,and the decentralized control among strings can be autonomously guaranteed.Moreover,the secondary control is designed to realize multi-mode objectives,including on/off-grid mode switching,grid-connected power interactive management,and off-grid voltage quality regulation.As a result,the proposed method has the ability of plug-and-play capabilities,single-point failure redundancy,and seamless mode-switching.Experimental results are provided to verify the effectiveness of the proposed practical solution. 展开更多
关键词 Hybrid series-parallel microgrid Distributed control Decentralized control Power inverter
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Yaw stabilization and maneuvering control of tailless flying wing by co-directional fluidic thrust vectoring
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作者 Liu ZHANG Meng HE 《Chinese Journal of Aeronautics》 2026年第1期66-77,共12页
Fluidic Thrust Vectoring(FTV)is used for the yaw attitude control of tailless flying wing,which can significantly improve stealth performance,maneuverability and lateral/heading maneuverability.The FTV control scheme ... Fluidic Thrust Vectoring(FTV)is used for the yaw attitude control of tailless flying wing,which can significantly improve stealth performance,maneuverability and lateral/heading maneuverability.The FTV control scheme of co-directional secondary flow was designed based on a 30 kgf thrust turbojet engine,an equivalent rudder deflection control variable of Mass Flow Combination(MFC)was proposed,and a control model was established to form a FTV control system scheme,which was integrated with the flight control system of a 100 kg tailless flying wing with medium aspect ratio to achieve closed-loop control of the yaw attitude based on FTV.The heading stability augmentation and maneuvering control characteristics and time response characteristics of tailless flying wing by FTV were quantitatively studied through virtual flight test in a wind tunnel at a wind speed of 35 m/s.The results show that the control strategy based on MFC achieves bidirectional continuous and stable control of thrust vector angle in a range of±11°,and the thrust vector angle varies monotonically with MFC;the co-directional FTV realizes bidirectional continuous and stable control of the yaw attitude of tailless flying wing,without longitudinal/lateral coupling moment.The increment of the maximum yawing moment coefficient is 0.0029,the maximum yaw rate is 7.55(°)/s,and the response time of the yaw rate of the vectoring nozzle actuated by the secondary flow is about 0.06 s,which satisfies the heading stability augmentation and maneuvering control response requirements of the aircraft with statically unstable heading,and provides new control means for the heading rudderless attitude control of tailless flying wing. 展开更多
关键词 Thrust vectoring Flow control Coanda effect Flying-wing aircraft Flight tests Yaw control
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Strategic and Regional Investigation of the Exact Controllability of the Vibrating Plate Equation on a Regular Domain
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作者 Mouhamadou NGOM Cheikh SECK 《Journal of Mathematical Research with Applications》 2026年第1期134-142,共9页
In this paper,we define for the trace operator,the solution of certain models of vibrating plates standards with initial data in a strategic region spaces of weak regularities.Indeed,we know that the notion of regiona... In this paper,we define for the trace operator,the solution of certain models of vibrating plates standards with initial data in a strategic region spaces of weak regularities.Indeed,we know that the notion of regional controllability is more adapted to systems described by dynamic systems.Regional controllability results in a strategic area were established for vibrating plates by the Hilbertian Uniqueness Method. 展开更多
关键词 exact controllability vibrating plates strategic regional control Hilbert uniqueness method
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Conceptual design and preliminary feasibility study of fluid‑driven suspended control rods for molten salt reactors
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作者 Jin‑Tong Cao Gui‑Feng Zhu +4 位作者 Chang‑Qing Yu Ya‑Fen Liu Yang Zou Rui Yan Hong‑Jie Xu 《Nuclear Science and Techniques》 2026年第1期225-243,共19页
Molten salt reactors,being the only reactor type among Generation Ⅳ advanced nuclear reactors that utilize liquid fuels,offer inherent safety,high-temperature,and low-pressure operation,as well as the capability for ... Molten salt reactors,being the only reactor type among Generation Ⅳ advanced nuclear reactors that utilize liquid fuels,offer inherent safety,high-temperature,and low-pressure operation,as well as the capability for online fuel reprocessing.However,the fuel-salt flow results in the decay of delayed neutron precursors(DNPs)outside the core,causing fluctuations in the effective delayed neutron fraction and consequently impacting the reactor reactivity.Particularly in accident scenarios—such as a combined pump shutdown and the inability to rapidly scram the reactor—the sole reliance on negative temperature feedback may cause a significant increase in core temperature,posing a threat to reactor safety.To address these problems,this paper introduces an innovative design for a passive fluid-driven suspended control rod(SCR)to dynamically compensate for reactivity fluctuations caused by DNPs flowing with the fuel.The control rod operates passively by leveraging the combined effects of gravity,buoyancy,and fluid dynamic forces,thereby eliminating the need for an external drive mechanism and enabling direct integration within the active region of the core.Using a 150 MWt thorium-based molten salt reactor as the reference design,we develop a mathematical model to systematically analyze the effects of key parameters—including the geometric dimensions and density of the SCR—on its performance.We examine its motion characteristics under different core flow conditions and assess its feasibility for the dynamic compensation of reactivity changes caused by fuel flow.The results of this study demonstrate that the SCR can effectively counteract reactivity fluctuations induced by fuel flow within molten salt reactors.A sensitivity analysis reveals that the SCR’s average density exerts a profound impact on its start-up flow threshold,channel flow rate,resistance to fuel density fluctuations,and response characteristics.This underscores the critical need to optimize this parameter.Moreover,by judiciously selecting the SCR’s length,number of deployed units,and the placement we can achieve the necessary reactivity control while maintaining a favorable balance between neutron economy and heat transfer performance.Ultimately,this paper provides an innovative solution for the passive reactivity control in molten salt reactors,offering significant potential for practical engineering applications. 展开更多
关键词 Molten salt reactor DNP flow-induced reactivity Passive control Suspended control rod
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Impact of CeO_(2) and GO on the combustion performance of HANbased electrically controlled solid propellant
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作者 Lian Li Lirong Bao +8 位作者 Zhiwen Wang Feng Li Lai Jiang Chuntian Li Zhidong Wang Yinghua Ye Ruiqi Shen Luigi De Luca Wei Zhang 《Defence Technology(防务技术)》 2026年第2期160-171,共12页
Electrically controlled solid propellant(ECSP)offers multiple ignition and adjustable burning rate,serving as fuel for next-generation intelligent propulsion systems.To further enhance the combustion performance of EC... Electrically controlled solid propellant(ECSP)offers multiple ignition and adjustable burning rate,serving as fuel for next-generation intelligent propulsion systems.To further enhance the combustion performance of ECSP,a method utilizing electrochemical and thermal decomposition catalysts has been proposed.In this work,we investigated the combustion characteristics of hydroxylamine nitrate(HAN)-based ECSP incorporating cerium oxide(CeO_(2))and graphene oxide(GO)by using an electrically controlled combustion test system.Electrochemical impedance spectroscopy(EIS)and linear sweep voltammetry(LSV)were used to measure the electrical conductibility and overpotential of ECSP with various additives,and Tafel curves were calculated.Thermogravimetric analysis coupled with differential scanning calorimetry(TG-DSC)was employed to investigate the thermal decomposition behavior of ECSP.While the addition of CeO_(2) and GO reduced the conductivity of ECSP,both catalysts exhibited strong electrocatalytic properties and facilitated the thermal decomposition of ECSP.Between two catalysts,GO demonstrated superior electrochemical catalytic performance but weaker thermal decomposition catalytic ability than CeO_(2).The addition of catalysts significantly enhanced the combustion performance of HAN-based ECSP.Specifically,the ignition delay time was shortened by 10%~20%.CeO_(2) raised the burning rate by approximately 20%but GO exhibited a remarkable boost of 40%in burning rate at high voltage.The combination of GO and PVA produced a flame-retardant substance that negatively impacted the ignition delay of ECSP and resulted in a smaller increase in the burning rate of ECSP at low ignition voltages. 展开更多
关键词 Electrically controlled solid propellant Hydroxylamine nitrate controllable combustion Electrothermal combustion mechanism
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Probabilistic fault-tolerant fuzzy control for adaptive event-triggered lane-keeping system of autonomous electric vehicles
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作者 Guoshun Cai Guodong Yin +3 位作者 Jiwei Feng Weihua Wang Zhenwu Fang Chaobin Zhou 《Chinese Journal of Mechanical Engineering》 2026年第1期453-468,共16页
Realistic faults and failures often occur probabilistically in the lane-keeping system of autonomous electric vehicles,reducing system reliability and posing significant challenges to driving safety.To enhance the sys... Realistic faults and failures often occur probabilistically in the lane-keeping system of autonomous electric vehicles,reducing system reliability and posing significant challenges to driving safety.To enhance the system resilience,this paper proposes a novel robust fuzzy fault-tolerant control strategy that incorporates the adaptive event-trigger(AET)mechanism to realize stable,reliable,and precise lane-keeping control in the presence of multiple system uncertainties and probabilistic faults.First,to capture the uncertain and time-varying nature of tire cornering stiffness,an effective Takagi-Sugeno(T-S)fuzzy tire model is developed.Then,by employing the distribution-based probabilistic approach,two sets of unrelated random variables,random sensor and actuator faults in the control system,are modeled.Next,to improve communication efficiency and address ineluctable network-induced delays,an AET control framework with a well-designed triggering condition is established.Subsequently,a robust fuzzy output feedback fault-tolerant lane-keeping controller that satisfies the H∞per-formance is designed by using the Lyapunov-Krasovski functional method.Furthermore,the mean-square ex-ponential stability of the closed-loop system is rigorously guaranteed.Finally,real-time simulations based on Carsim/Simulink co-simulation platform under dynamic driving conditions demonstrate the feasibility and ef-fectiveness of the proposed control strategy. 展开更多
关键词 Autonomous vehicles Lane-keeping control Event-triggered control Probabilistic sensor and actuator faults Network-induced delay
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Intrusion Detection Systems in Industrial Control Systems:Landscape,Challenges and Opportunities
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作者 Tong Wu Dawei Zhou +1 位作者 Qingyu Ou Fang Luo 《Computers, Materials & Continua》 2026年第3期162-200,共39页
The increasing interconnection of modern industrial control systems(ICSs)with the Internet has enhanced operational efficiency,but alsomade these systemsmore vulnerable to cyberattacks.This heightened exposure has dri... The increasing interconnection of modern industrial control systems(ICSs)with the Internet has enhanced operational efficiency,but alsomade these systemsmore vulnerable to cyberattacks.This heightened exposure has driven a growing need for robust ICS security measures.Among the key defences,intrusion detection technology is critical in identifying threats to ICS networks.This paper provides an overview of the distinctive characteristics of ICS network security,highlighting standard attack methods.It then examines various intrusion detection methods,including those based on misuse detection,anomaly detection,machine learning,and specialised requirements.This paper concludes by exploring future directions for developing intrusion detection systems to advance research and ensure the continued security and reliability of ICS operations. 展开更多
关键词 Industrial control system industrial control system network security intrusion detection cyberspace security ICS network network security
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Adaptive Grid-Interface Control for Power Coordination in Multi-Microgrid Energy Networks
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作者 Sk.A.Shezan 《Energy Engineering》 2026年第1期91-114,共24页
Modern power systems increasingly depend on interconnected microgrids to enhance reliability and renewable energy utilization.However,the high penetration of intermittent renewable sources often causes frequency devia... Modern power systems increasingly depend on interconnected microgrids to enhance reliability and renewable energy utilization.However,the high penetration of intermittent renewable sources often causes frequency deviations,voltage fluctuations,and poor reactive power coordination,posing serious challenges to grid stability.Conventional Interconnection FlowControllers(IFCs)primarily regulate active power flowand fail to effectively handle dynamic frequency variations or reactive power sharing in multi-microgrid networks.To overcome these limitations,this study proposes an enhanced Interconnection Flow Controller(e-IFC)that integrates frequency response balancing and an Interconnection Reactive Power Flow Controller(IRFC)within a unified adaptive control structure.The proposed e-IFC is implemented and analyzed in DIgSILENT PowerFactory to evaluate its performance under various grid disturbances,including frequency drops,load changes,and reactive power fluctuations.Simulation results reveal that the e-IFC achieves 27.4% higher active power sharing accuracy,19.6% lower reactive power deviation,and 18.2% improved frequency stability compared to the conventional IFC.The adaptive controller ensures seamless transitions between grid-connected and islanded modes and maintains stable operation even under communication delays and data noise.Overall,the proposed e-IFCsignificantly enhances active-reactive power coordination and dynamic stability in renewable-integrated multi-microgrid systems.Future research will focus on coupling the e-IFC with tertiary-level optimization frameworks and conducting hardware-in-the-loop validation to enable its application in large-scale smart microgrid environments. 展开更多
关键词 Active power flow control interconnection flow controller(IFC) frequency response micro grid stability reactive power management
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