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Robust force tracking control via backstepping sliding mode control and virtual damping control for hydraulic quadruped robots 被引量:5
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作者 SHEN Wei Lü Xiao-bin MA Chen-jun 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第9期2673-2686,共14页
In order to improve the force tracking performance of hydraulic quadruped robots in uncertain and unstructured environments,an impedance-based adaptive reference trajectory generation scheme is used.Secondly,in order ... In order to improve the force tracking performance of hydraulic quadruped robots in uncertain and unstructured environments,an impedance-based adaptive reference trajectory generation scheme is used.Secondly,in order to improve the robustness to environmental changes and reduce the contact force errors caused by trajectory tracking errors,the backstepping sliding mode controller is combined with the adaptive reference trajectory generator.Finally,a virtual damping control based on velocity and pressure feedback is proposed to solve the problem of contact force disappearance and stall caused by sudden environmental change.The simulation results show that the proposed scheme has higher contact force tracking accuracy when the environment is unchanged;the contact force error can always be guaranteed within an acceptable range when the environment is reasonably changed;when the environment suddenly changes,the drive unit can move slowly until the robot re-contacts the environment. 展开更多
关键词 hydraulic quadruped robot impedance control backstepping sliding mode control virtual damping control
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A new wide area damping controller design method considering signal transmission delay to damp interarea oscillations in power system 被引量:9
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作者 杨波 孙元章 《Journal of Central South University》 SCIE EI CAS 2014年第11期4193-4198,共6页
Wide area damping controller(WADC) is usually utilized to damp interarea low frequency oscillation in power system. However, conventional WADC design method neglects the influence of signal transmission delay and damp... Wide area damping controller(WADC) is usually utilized to damp interarea low frequency oscillation in power system. However, conventional WADC design method neglects the influence of signal transmission delay and damping performance of WADC designed by the conventional method may deteriorate or even has no effect when signal transmission delay is beyond delay margin, an index that denotes delay endurance degree of power system. Therefore, a new design method for WADC under the condition of expected damping factor and required signal transmission delay is presented in this work. An improved delay margin with less conservatism is derived by adopting a new Lyapunov-Krasovskii function and more compact bounding technique on the derivative of Lyapunov-Krasovskii functional. The improved delay margin, which constructs the correlation of damping factor and signal transmission delay, can be used to design WADC. WADC designed by the proposed method can ensure that power system satisfies expected damping factor when WADC input signal is delayed within delay margin. Satisfactory test results demonstrate the effectiveness of the proposed method. 展开更多
关键词 power system wide area damping controller interarea oscillation time delay
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Damping controller design based on FO-PID-EMA in VSC HVDC system to improve stability of hybrid power system 被引量:2
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作者 Nima SHAFAGHATIAN Arvin KIANI +2 位作者 Naser TAHERI Zahra RAHIMKHANI Seyyed Saeed MASOUMI 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第2期403-417,共15页
Wind energy sources have different structures and functions from conventional power plants in the power system.These resources can affect the exchange of active and reactive power of the network.Therefore,power system... Wind energy sources have different structures and functions from conventional power plants in the power system.These resources can affect the exchange of active and reactive power of the network.Therefore,power system stability will be affected by the performance of wind power plants,especially in the event of a fault.In this paper,the improvement of the dynamic stability in power system equipped by wind farm is examined through the supplementary controller design in the high voltage direct current(HVDC)based on voltage source converter(VSC)transmission system.In this regard,impacts of the VSC HVDC system and wind farm on the improvement of system stability are considered.Also,an algorithm based on controllability(observability)concept is proposed to select most appropriate and effective coupling between inputs-outputs(IO)signals of system in different work conditions.The selected coupling is used to apply damping controller signal.Finally,a fractional order PID controller(FO-PID)based on exchange market algorithm(EMA)is designed as damping controller.The analysis of the results shows that the wind farm does not directly contribute to the improvement of the dynamic stability of power system.However,it can increase the controllability of the oscillatory mode and improve the performance of the supplementary controller. 展开更多
关键词 hybrid power system high voltage direct current based on voltage source converter(VSC HVDC) fractional order PID(FO-PID)damping controller exchange market algorithm
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Influence of active constrained layer damping on the coupled vibration response of functionally graded magneto-electro-elastic plates with skewed edges 被引量:3
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作者 M.Vinyas D.Harursampath T.Nguyen-Thoi 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2020年第5期1019-1038,共20页
This article makes the first attempt in assessing the influence of active constrained layer damping(ACLD)treatment towards precise control of frequency responses of functionally graded skew-magneto-electroelastic(FGSM... This article makes the first attempt in assessing the influence of active constrained layer damping(ACLD)treatment towards precise control of frequency responses of functionally graded skew-magneto-electroelastic(FGSMEE)plates by employing finite element methods.The materials are functionally graded across the thickness of the plate in terms of modest power-law distributions.The principal equations of motion of FGSMEE are derived via Hamilton’s principle and solved using condensation technique.The effect of ACLD patches are modelled by following the complex modulus approach(CMA).Additionally,distinctive emphasis is laid to evaluate the influence of geometrical skewness on the attenuation capabilities of the plate.The accuracy of the current analysis is corroborated with comparison of previous researches of similar kind.Additionally,a complete parametric study is directed to understand the combined impacts of various factors like coupling fields,patch location,fiber orientation of piezoelectric patch in association with skew angle and power-law index. 展开更多
关键词 Vibration control Functionally graded MEE plates Skew angle Active constrained layer damping(ACLD) PATCHES
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Application and optimization design of non-obstructive particle damping-phononic crystal vibration isolator in viaduct structure-borne noise reduction 被引量:1
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作者 SHI Duo-jia ZHAO Cai-you +3 位作者 ZHANG Xin-hao ZHENG Jun-yuan WEI Na-chao WANG Ping 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第7期2513-2531,共19页
The problems associated with vibrations of viaducts and low-frequency structural noise radiation caused by train excitation continue to increase in importance.A new floating-slab track vibration isolator-non-obstructi... The problems associated with vibrations of viaducts and low-frequency structural noise radiation caused by train excitation continue to increase in importance.A new floating-slab track vibration isolator-non-obstructive particle damping-phononic crystal vibration isolator is proposed herein,which uses the particle damping vibration absorption technology and bandgap vibration control theory.The vibration reduction performance of the NOPD-PCVI was analyzed from the perspective of vibration control.The paper explores the structure-borne noise reduction performance of the NOPD-PCVIs installed on different bridge structures under varying service conditions encountered in practical engineering applications.The load transferred to the bridge is obtained from a coupled train-FST-bridge analytical model considering the different structural parameters of bridges.The vibration responses are obtained using the finite element method,while the structural noise radiation is simulated using the frequency-domain boundary element method.Using the particle swarm optimization algorithm,the parameters of the NOPD-PCVI are optimized so that its frequency bandgap matches the dominant bridge structural noise frequency range.The noise reduction performance of the NOPD-PCVIs is compared to the steel-spring isolation under different service conditions. 展开更多
关键词 non-obstructive particle damping phononic crystal vibration isolator band gap optimization floating-slab track bridge structure-borne noise control particle swarm optimization
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Research on Influence of Damping Material on Structure Performance of Torpedo
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作者 曹银萍 石秀华 孙青岩 《Defence Technology(防务技术)》 SCIE EI CAS 2010年第2期100-103,共4页
Reducing the self-noise and radiated noise of torpedo is an effective way to enhance its detection and concealment capabilities.After discussing the basic principle on noise and vibration control and main noise source... Reducing the self-noise and radiated noise of torpedo is an effective way to enhance its detection and concealment capabilities.After discussing the basic principle on noise and vibration control and main noise sources in torpedo,the application of damping treatment for noise and vibration absorption was proposed in this paper.Compared composite materials(damping and metal materials)used as segment joint,their different contributions to the damping performance of base structure were investigated.The results show that the damping material can be used as segment joint effectively in vibration control.Taking cantilever beam as an example,four different damping treatments were compared in natural frequency and damping loss factor,the results show the influences of different damping layer layouts on the structure damping performance,and offer a reference for the torpedo shell design. 展开更多
关键词 composite materials noise and vibration control TORPEDO damping treatment damping ratio
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Study on Outboard Inductive Damping Valve in Hydro-pneumatic Suspension
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作者 王勋 陈思忠 《Defence Technology(防务技术)》 SCIE EI CAS 2011年第1期1-8,共8页
A new outboard inductive damping valve without any electronic control system is developed. Its working principle,structure and external characteristic are studied. Its mathematical model is presented and its damping c... A new outboard inductive damping valve without any electronic control system is developed. Its working principle,structure and external characteristic are studied. Its mathematical model is presented and its damping characteristic is investigated on the basis of fluid continuity equation,differential equations of motion and Bernoulli equation. The influence of the valve parameters on the damping characteristic is studied numerically. The effects of outboard inductive damping valve and common damping valve on ride and tire load are compared also. The external characteristic of the valve is verified in bench test. The results show that the valve’s mathematical model is quite accurate and the developed valve can be adjust in two stages,which can also meet the requirements of the dynamic characteristic of the vehicle suspension system. 展开更多
关键词 turn and control of fluid hydro-pneumatic suspension outboard inductive damping valve external characteristic
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Identification and Control of Typical Industrial Process 被引量:1
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作者 PENG Hui WU Shao-cheng 《Journal of Central South University》 SCIE EI CAS 2000年第3期165-169,共5页
Many industrial processes such as heating furnaces have over damping dynamic characteristics. Based on an innovative impulse response model, a method of identification and control for the over damping plant is introdu... Many industrial processes such as heating furnaces have over damping dynamic characteristics. Based on an innovative impulse response model, a method of identification and control for the over damping plant is introduced in the paper. The number of parameters of the model is much less than conventional impulse response model. The model based on tuning procedure of numerical optimum PID controller parameters is presented. For an actual instance, a large scale airflow circulatory resistance furnace control system with cascades of time delays is developed. In the system, the optimum PID control is used in the inner loop. A nonlinear PI compensation control is applied in the outer loop. The coordinating control among each output is realized by a fuzzy control strategy. A process surveillance organization monitors running situation of system and tunes controller parameters. 展开更多
关键词 over damping dynamics time delay CASCADE plant IMPULSE response SEQUENCE identification optimal PID parameters numerical PID controller coordinating control
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Adaptive controller design based on input-output signal selection for voltage source converter high voltage direct current systems to improve power system stability 被引量:2
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作者 Abdolkhalegh Hamidi Jamal Beiza +1 位作者 Ebrahim Babaei Sohrab Khanmohammadi 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第9期2254-2267,共14页
An input-output signal selection based on Phillips-Heffron model of a parallel high voltage alternative current/high voltage direct current(HVAC/HVDC) power system is presented to study power system stability. It is w... An input-output signal selection based on Phillips-Heffron model of a parallel high voltage alternative current/high voltage direct current(HVAC/HVDC) power system is presented to study power system stability. It is well known that appropriate coupling of inputs-outputs signals in the multivariable HVDC-HVAC system can improve the performance of designed supplemetary controller. In this work, different analysis techniques are used to measure controllability and observability of electromechanical oscillation mode. Also inputs–outputs interactions are considered and suggestions are drawn to select the best signal pair through the system inputs-outputs. In addition, a supplementary online adaptive controller for nonlinear HVDC to damp low frequency oscillations in a weakly connected system is proposed. The results obtained using MATLAB software show that the best output-input for damping controller design is rotor speed deviation as out put and phase angle of rectifier as in put. Also response of system equipped with adaptive damping controller based on HVDC system has appropriate performance when it is faced with faults and disturbance. 展开更多
关键词 input-output signal selection online adaptive damping controller nonlinear high voltage direct current power systemstability
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Vibration Control of High-speed Cannonball Transport Mechanism Driven by Impact
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作者 王国庆 刘宏昭 +1 位作者 何长安 杨松峰 《Defence Technology(防务技术)》 SCIE EI CAS 2005年第1期122-128,共7页
A method is presented to control the vibration of high-speed cannonball transport mechanism due to the reduction of its weight, which adhere a nonlinear Zn-27Al-1Cu damping alloy layer and a constraint layer partly to... A method is presented to control the vibration of high-speed cannonball transport mechanism due to the reduction of its weight, which adhere a nonlinear Zn-27Al-1Cu damping alloy layer and a constraint layer partly to the part of mechanism driven by impact. Based on the equivalent viscous damping theory and using curve fitting to describe the rule of the dissipation factor of damping alloy changing with stress, the nonlinear constitutive relation of Zn-27Al-1Cu damping alloy is given. The nonlinear spring damping contact model is adopted to describe the contact force of the clearance joint.Based on the nonlinear finite element contact theory, the outer impact contact force between the mechanism and its working environment is analyzed, and a coupled dynamic model of structural impact and mechanism motion with clearance joint is put forward. A dynamic model is established for the cannonball transport mechanism partly adhering Zn-27Al-1Cu damping alloy layer and constraint layer under complex impact conditions. At last, the feasibility of the method presented is proved by numerical simulation. 展开更多
关键词 变量控制 高速炮弹传输 冲击接触驱动 阻尼合金 自行加农炮
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板式电涡流阻尼单元的平面阻尼特性研究 被引量:1
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作者 陈政清 刘昕伯 +3 位作者 黄智文 郭文超 曹益文 张弘毅 《东南大学学报(自然科学版)》 北大核心 2025年第2期317-325,共9页
研究了板式电涡流阻尼单元(planar eddy current damper,PECD)的阻尼特性随平面振动方向的变化规律。首先,推导了PECD发生相对平移运动时电涡流阻尼力的理论计算公式,发现PECD相对平移运动产生的电涡流阻尼力并不一定与速度方向完全相反... 研究了板式电涡流阻尼单元(planar eddy current damper,PECD)的阻尼特性随平面振动方向的变化规律。首先,推导了PECD发生相对平移运动时电涡流阻尼力的理论计算公式,发现PECD相对平移运动产生的电涡流阻尼力并不一定与速度方向完全相反,其在平面直角坐标系上的2个分量可由一个2×2的平面阻尼系数矩阵与相对速度向量的乘积唯一确定。其次,分别选取4种典型永磁阵列的PECD,采用电磁有限元方法计算了它们的平面阻尼系数矩阵和阻尼力随速度方向的变化,验证了上述阻尼力理论计算公式的正确性,并提出了PECD的等效阻尼系数概念。然后,针对等效阻尼系数各向同性的PECD,在保证永磁体高度和投影面积不变的条件下,分析了其阻尼系数随永磁体数量和永磁体行、列间距的变化规律。最后,开展了阻尼系数各向同性PECD的阻尼系数测试试验,进一步验证了理论分析和有限元仿真的正确性。 展开更多
关键词 调谐质量阻尼器 电涡流阻尼 振动控制 阻尼系数
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拓宽LCL型并网逆变器有效阻尼区的延时补偿策略 被引量:1
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作者 张学毅 张栋 李圣清 《电源学报》 北大核心 2025年第3期280-289,308,共11页
在数字控制LCL型并网逆变器系统中,控制延时使得电容电流反馈有源阻尼法抑制谐振尖峰的性能降低,有效阻尼区仅为0~f_(s)/6(f_(s)为采样频率),严重影响系统的稳定性。针对此问题,提出1种延时补偿策略,首先在前向通路中加入延时补偿环节... 在数字控制LCL型并网逆变器系统中,控制延时使得电容电流反馈有源阻尼法抑制谐振尖峰的性能降低,有效阻尼区仅为0~f_(s)/6(f_(s)为采样频率),严重影响系统的稳定性。针对此问题,提出1种延时补偿策略,首先在前向通路中加入延时补偿环节提高系统分界频率,然后根据稳定判据详细推导出补偿后系统的稳定条件,最后在新稳定条件的约束下设计电容电流反馈系数。分析结果表明,所提策略可将有效阻尼区拓宽至0~0.4f_(s),扩大滤波器谐振频率f_(r)的选取范围,降低逆变器的设计成本,提高系统对宽范围电网阻抗变化的适应能力。仿真与实验结果表明,所提策略拓宽了系统稳定运行区域,改善了弱电网下谐振频率f_(r)≥f_(s)/6时系统稳定性差的问题。 展开更多
关键词 控制延时 电容电流反馈 有效阻尼区 延时补偿
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转子阻尼结构对双轴励磁发电机功率跟踪励磁控制特性的影响 被引量:2
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作者 许国瑞 傅悦 张建承 《中国电机工程学报》 北大核心 2025年第3期1137-1147,I0028,共12页
双轴励磁同步发电机(双励机)可以通过调节励磁磁动势的大小和方向,独立控制有功、无功功率以增强其抑制系统振荡的能力。然而,双励机转子本体阻尼会影响励磁磁动势的响应速度,进而影响机组动态特性。该文将双励机的二维瞬态电磁场模型... 双轴励磁同步发电机(双励机)可以通过调节励磁磁动势的大小和方向,独立控制有功、无功功率以增强其抑制系统振荡的能力。然而,双励机转子本体阻尼会影响励磁磁动势的响应速度,进而影响机组动态特性。该文将双励机的二维瞬态电磁场模型与定、转子电路方程相结合,建立双励机的场-路耦合时步有限元模型;以系统三相突然短路引起的大扰动为例,研究转子槽楔、铁心等本体阻尼结构对功率跟踪励磁控制特性的影响,揭示各阻尼结构对动态特性指标的影响规律;为提升双励机动态性能,采用模糊控制法对励磁控制参数进行优化,获得了适用于不同转子阻尼结构的最优励磁控制参数。研究结果可为双励机动态特性的改善和系统阻尼作用的提升提供理论支撑。 展开更多
关键词 双轴励磁同步发电机 转子阻尼结构 功率跟踪励磁控制 动态特性
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基于缓冲函数和阻尼切换的构网型储能参数自适应调整方法 被引量:1
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作者 崔杨 马搏余 +2 位作者 戴汉扬 马鑫 赵钰婷 《电力系统自动化》 北大核心 2025年第10期77-86,共10页
新型电力系统高比例新能源和高比例电力电子设备的发展趋势下,新能源并网采用构网型控制技术虽改善了系统因惯量和阻尼不足带来的稳定性问题,但同时也降低了系统动态调节性能。文中提出基于缓冲函数和稳态/暂态阻尼切换的构网型储能参... 新型电力系统高比例新能源和高比例电力电子设备的发展趋势下,新能源并网采用构网型控制技术虽改善了系统因惯量和阻尼不足带来的稳定性问题,但同时也降低了系统动态调节性能。文中提出基于缓冲函数和稳态/暂态阻尼切换的构网型储能参数自适应调整方法以改善系统动态调节性能。首先,在惯量调整中使用缓冲函数增加系统的调节平滑度。其次,在阻尼调整中引入稳态/暂态阻尼切换环节,减少频率下降时有功功率输出稳态误差。然后,通过模糊控制为惯量和阻尼引入修正量并对所提方法进行稳定性分析。最后,通过仿真验证了所提方法对提高系统小干扰稳定性和功率响应动态性能的有效性。 展开更多
关键词 新型电力系统 储能 构网型控制 转动惯量 阻尼系数 缓冲函数 自适应调整方法 小干扰稳定 模糊控制 动态性能
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面向加工的并联机器人振动控制策略研究
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作者 刘永兴 桂方志 王强 《机床与液压》 北大核心 2025年第11期90-98,共9页
针对并联加工机器人的振动控制,设计一种并联机器人多重调谐质量阻尼(MTMD)系统。建立并联机器人动力学模型,通过试验识别出其谐振模态频率为91.0~128.1 Hz。将质量阻尼系统设计为两个方向的并联配置,并建立多重调谐质量阻尼系统阻抗模... 针对并联加工机器人的振动控制,设计一种并联机器人多重调谐质量阻尼(MTMD)系统。建立并联机器人动力学模型,通过试验识别出其谐振模态频率为91.0~128.1 Hz。将质量阻尼系统设计为两个方向的并联配置,并建立多重调谐质量阻尼系统阻抗模型,在此基础上提出一种阻抗模型的多目标变振动特性优化方法。最后,通过模态试验和加工试验验证了所提并联机器人多重调谐质量阻尼系统阻抗系统在抑制机器人加工振动及提高加工质量方面的有效性。结果表明:共振模态的振幅沿X、Y轴分别降低38.8%和40.7%,所提MTMD系统可抑制20%~30%进给方向的振动和40%~50%径向方向的振动,工件的平均波纹度降低32%,粗糙度降低17%。 展开更多
关键词 并联加工机器人 振动控制 阻尼器 谐振模态
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计及短路比的并网逆变器混合阻尼自适应谐振抑制方法研究
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作者 王晓寰 陈锡恒 +1 位作者 闵帆 赵晓君 《太阳能学报》 北大核心 2025年第8期585-595,共11页
新能源发电因其间歇性、随机性等特点,在大规模并网时会导致电网强度产生较大波动,进而对并网控制系统的稳定性产生不利影响。为解决这一问题,该文建立LCL型三相并网逆变器的系统阻抗模型,深入分析电网强度动态变化对逆变器输出等效阻... 新能源发电因其间歇性、随机性等特点,在大规模并网时会导致电网强度产生较大波动,进而对并网控制系统的稳定性产生不利影响。为解决这一问题,该文建立LCL型三相并网逆变器的系统阻抗模型,深入分析电网强度动态变化对逆变器输出等效阻抗的影响,并揭示了这一变化如何导致谐振频率的迁移现象。结合以上理论分析,提出一种计及短路比的混合阻尼自适应谐振抑制方法。该方法依据发电系统的短路比实时数值,动态调整加权控制系数,自适应地响应系统谐振频率迁移,有效抑制谐振,确保不同电网强度下的并网电流稳定。这一方法不仅能在电网强度宽范围变化时有效工作,且具有较强的适应性和鲁棒性。通过仿真和硬件在环实验验证,该文所提的谐振抑制方法在高渗透新能源并网系统中展现出更优越的效果。 展开更多
关键词 谐振抑制 混合阻尼 高渗透率 自适应控制 谐振迁移
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基于虚拟同步发电机的船舶岸电并网自适应控制
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作者 徐合力 吴启洋 高岚 《中国航海》 北大核心 2025年第2期110-117,126,共9页
为提高传统虚拟同步发电机控制的船舶岸电系统频率的稳定性,引入惯量和阻尼自适应变化的控制策略。首先通过虚拟同步发电机的有功功率小信号模型分析出惯量和阻尼对频率的影响,然后根据有功功率和角频率的暂态过程,列举出系统在非稳态... 为提高传统虚拟同步发电机控制的船舶岸电系统频率的稳定性,引入惯量和阻尼自适应变化的控制策略。首先通过虚拟同步发电机的有功功率小信号模型分析出惯量和阻尼对频率的影响,然后根据有功功率和角频率的暂态过程,列举出系统在非稳态不同阶段下惯量和阻尼的需求,以此设计一种使惯量和阻尼能随负载变化而自适应调整的控制方式,从而有效抑制岸电频率波动。仿真试验表明:与惯量和阻尼为定值的传统虚拟同步发电机控制相比,虚拟同步发电机自适应控制对岸电频率的调节有着更小的超调量、更短的调节时间和更优的调节精度,能有效改善系统的调频特性;且可以提高从岸电向船电转移有功功率的平滑程度。 展开更多
关键词 船舶岸电 自适应虚拟同步发电机 惯量和阻尼 并网控制
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抑制电力系统低频振荡的磁控变压器附加控制
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作者 赵国生 王洪光 李辉 《南方电网技术》 北大核心 2025年第2期28-35,共8页
随着互联电力系统的发展,低频振荡现象越来越频繁,研究低频振荡的抑制措施以提高电力系统的稳定性和供电可靠性成为亟须解决的问题。因此提出了一种利用磁控变压器附加阻尼控制来抑制电力系统低频振荡的方法。首先,介绍了磁控变压器的... 随着互联电力系统的发展,低频振荡现象越来越频繁,研究低频振荡的抑制措施以提高电力系统的稳定性和供电可靠性成为亟须解决的问题。因此提出了一种利用磁控变压器附加阻尼控制来抑制电力系统低频振荡的方法。首先,介绍了磁控变压器的工作原理,并推导了其数学模型。其次,建立了含磁控变压器的单机无穷大系统的线性化模型,分析了磁控变压器的阻尼特性,说明了磁控变压器附加控制为电力系统提供阻尼的机理。然后,重点研究了基于频域法的附加阻尼控制器参数设计的方法,并给出了具体的单机无穷大系统算例。最后,通过Simulink时域仿真验证了磁控变压器附加阻尼控制器的有效性和可行性。 展开更多
关键词 电力系统稳定性 低频振荡 磁控变压器 附加阻尼控制器 单机系统
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新型黏弹性自复位耗能支撑力学特性及减震性能研究
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作者 付兴 郭代恩瑞 +2 位作者 王德斌 王英豪 冷迅 《土木工程学报》 北大核心 2025年第4期75-87,共13页
为解决传统自复位支撑难以充分发挥其耗能性能的问题,基于桥式放大工作机理提出一种具有旋转位移放大功能的黏弹性自复位耗能支撑(RVSEB)。首先,介绍其基本构造和受力、位移及速度放大机理,对RVSEB试件进行低周往复加载试验,探讨支撑试... 为解决传统自复位支撑难以充分发挥其耗能性能的问题,基于桥式放大工作机理提出一种具有旋转位移放大功能的黏弹性自复位耗能支撑(RVSEB)。首先,介绍其基本构造和受力、位移及速度放大机理,对RVSEB试件进行低周往复加载试验,探讨支撑试件的支撑能力、耗能性能、复位性能及频率相关性;同时,建立其精细化有限元模型,数值模拟结果与试验结果基本吻合,验证有限元模型的准确性;最后,对附加RVSEB的双柱式桥墩结构进行非线性动力时程分析。结果表明:RVSEB支撑滞回曲线具有明显的旗帜型特征和良好的自复位性能,随着初始放大角度的减小其耗能能力和支撑能力均成倍增加;与无控结构相比,附加RVSEB双柱式桥墩结构墩顶位移、残余位移和墩底剪力均得到有效控制,罕遇地震作用下,初始放大角度为30°时,结构最大墩顶位移、墩底剪力和残余位移分别降低56.0%、87.1%和4.8%,RVSEB呈现出明显的支撑轴力放大效应,其耗能系统的变形、速度均迅速增加,支撑耗散的地震能量得到明显提高。 展开更多
关键词 自复位 位移放大 耗能支撑 减震控制 残余变形
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关于双向比的油气悬架半主动控制研究
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作者 章新 肖增亮 +1 位作者 董荻 李占龙 《中国工程机械学报》 北大核心 2025年第1期6-10,共5页
在多级阻尼切换的半主动悬架控制系统中,考虑减振器双向比和阻尼系数的最优匹配,以对车辆进行更优的阻尼控制。建立四级阻尼切换半主动控制悬架系统,将半主动控制方法与实际天棚阻尼控制方法及被动悬架系统进行对比验证。结果表明:在30 ... 在多级阻尼切换的半主动悬架控制系统中,考虑减振器双向比和阻尼系数的最优匹配,以对车辆进行更优的阻尼控制。建立四级阻尼切换半主动控制悬架系统,将半主动控制方法与实际天棚阻尼控制方法及被动悬架系统进行对比验证。结果表明:在30 km/h的B级路面谱和40 km/h的C级路面谱这两种不同的运行条件下,当以被动悬架为比较基准时,多级阻尼切换半主动控制方法对弹簧质量垂直加速度均方根值、悬架动挠度和车轮动载荷这3个性能指标的改善程度,约是实际天棚阻尼控制方法的2倍。 展开更多
关键词 液压减振器 多级阻尼切换 双向比 半主动控制
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