期刊文献+
共找到130篇文章
< 1 2 7 >
每页显示 20 50 100
INTELLIGENT CONTROL FOR ELECTRO-HYDRAULIC PROPORTIONAL POSITION SERVO SYSTEM
1
作者 Luo An Gui Weihua (Department of Automatic Control Engineering,Central South University of Technology, Changsha 410083) 《中国有色金属学会会刊:英文版》 CSCD 1996年第2期132-137,共6页
INTELLIGENTCONTROLFORELECTRO-HYDRAULICPROPORTIONALPOSITIONSERVOSYSTEMLuoAn;GuiWeihua(DepartmentofAutomaticCo... INTELLIGENTCONTROLFORELECTRO-HYDRAULICPROPORTIONALPOSITIONSERVOSYSTEMLuoAn;GuiWeihua(DepartmentofAutomaticControlEngineering,... 展开更多
关键词 INTELLIGENT control POLE PLACEMENT digital flow COMPENSATION electrohydraulic proportionalcontrol
下载PDF
RESEARCH ON THE PERFORMANCE OF NEW TYPE OF PROPORTIONAL PESSURE AND FLOW CONTROL VALVE 被引量:9
2
作者 Quan LongMa JianWang YongjinInstitute of Mechatronics,Taiyuan University of Technology,Taiyuan 030024, China 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2003年第3期281-284,共4页
A new closed loop flow controlling principle through correcting the valve'sopening area while load pressure is changing is carried out. Further more a principle using only oneproportional valve to compound control... A new closed loop flow controlling principle through correcting the valve'sopening area while load pressure is changing is carried out. Further more a principle using only oneproportional valve to compound control pressure and flow is suggested. By using very simpleproportional throttle valve in structure, the functions that five kinds of proportional valves orany two of them combined possess can be complimented. After analyzing, comparing, and testing thedynamic and static characteristics of valve with different controlling principles and main valvestructure styles, the optimized structure styles and control methods are achieved. 展开更多
关键词 electro-hydraulic proportional control proportional flow valve proportionalpressure valve Pressure and flow compound control
下载PDF
Flow Control for a Two-Stage Proportional Valve with Hydraulic Position Feedback 被引量:7
3
作者 He Wang Xiaohu Wang +1 位作者 Jiahai Huang Long Quan 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2020年第6期64-76,共13页
The current research mainly focuses on the flow control for the two-stage proportional valve with hydraulic position feedback which is named as Valvistor valve.Essentially,the Valvistor valve is a proportional throttl... The current research mainly focuses on the flow control for the two-stage proportional valve with hydraulic position feedback which is named as Valvistor valve.Essentially,the Valvistor valve is a proportional throttle valve and the flow fluctuates with the change of load pressure.The flow fluctuation severely restricts the application of the Valvistor valve.In this paper,a novel flow control method the Valvistor valve is provided to suppress the flow fluctuation and develop a high performance proportional flow valve.The mathematical model of this valve is established and linearized.Fuzzy proportional-integral-derivative(PID)controller is adopted in the closed-loop flow control system.The feedback is obtained by the flow inference with back-propagation neural network(BPNN)based on the spool displacement in the pilot stage and the pressure differential across the main orifice.The results show that inference with BPNN can obtain the flow data fast and accurately.With the flow control method,the flow can keep at the set point when the pressure differential across the main orifice changes.The flow control method is effective and the Valvistor valve changes from proportional throttle valve to proportional flow valve.For the developed proportional flow valve,the settling time of the flow is very short when the load pressure changes abruptly.The performances of hysteresis,linearity and bandwidth are in a high range.The linear mathematical model can be verified and the assumptions in the system modeling is reasonable. 展开更多
关键词 flow control proportional valve Hydraulic position feedback Back-propagation neural network
下载PDF
Tri-state Modulation Power Driving of Electro-hydraulic Proportional Amplifier 被引量:3
4
作者 NIE Yong WANG Qingfeng 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2009年第5期639-644,共6页
Switch electro-hydraulic proportional amplifier(PA) widely employs single switch modulation power driving(SSMPD) or reverse discharging power driving(RDPD) at present. SSMPD has slow dynamic response, and can't... Switch electro-hydraulic proportional amplifier(PA) widely employs single switch modulation power driving(SSMPD) or reverse discharging power driving(RDPD) at present. SSMPD has slow dynamic response, and can't adjust independently the dither signal's amplitude and frequency; RDPD accelerates the current decay; consequently, it increases current ripple and power loss. For the purpose of solving the above mentioned problem, the tri-state modulation power driving(TSMPD) scheme was proposed for improving the performance of power driving. Detailedly, the hardware circuit for the tri-state modulation power driving is designed; the tri-state modulation algorithm is realized by digital signal processor(DSP). The tri-state modulation power driving is investigated by experiments, comparetive experiments among the single switch modulation power driving(SSMPD), reverse discharging power driving(RDPD), and the TSMPD are implemented, and the experimental results demonstrate that the linearity error of TSMDP meets the requirement of PA; the current response of TSMSP is the best; the amplitude of ripple current of the TSMPD can be reduced without increasing frequency of PWM, in addition, dither signal amplitude and frequency can be adjusted independently for each other. It is very meaningful to guide the development of high performance proportional amplifier for high frequency response proportional solenoid. 展开更多
关键词 electro-hydraulic proportional control proportional amplifier tri-state modulation power driving
下载PDF
Investigation of Semi-Active Hydro-Pneumatic Suspension for a Heavy Vehicle Based on Electro-Hydraulic Proportional Valve 被引量:2
5
作者 Wenchao Yue Shoucheng Li Xiaojun Zou 《World Journal of Engineering and Technology》 2017年第4期696-706,共11页
Hydro-pneumatic suspension is widely used in heavy vehicles due to its nonlinear characteristics of stiffness and damping. However, the conventional passive hydro-pneumatic suspension can’t adjust parameters accordin... Hydro-pneumatic suspension is widely used in heavy vehicles due to its nonlinear characteristics of stiffness and damping. However, the conventional passive hydro-pneumatic suspension can’t adjust parameters according to the complicated road environment of heavy vehicles to fulfill the requirements of the vehicle ride comfort. In this paper, a semi-active hydro-pneumatic suspension system based on the electro-hydraulic proportional valve control is proposed, and fuzzy control is used as the control strategy to adjust the?damping force of the semi-active hydro-pneumatic suspension. A 1/4?semi-active hydro-pneumatic suspension model is established, which is co-simulated with AMESim and MATLAB/Simulink. The co-simulation results show that the semi-active hydro-pneumatic suspension system can significantly reduce vibration of the vehicle body, and improve the suspension performance comparing with passive hydro-pneumatic suspension. 展开更多
关键词 Hydro-Pneumatic SUSPENSION SEMI-ACTIVE control CO-SIMULATION electro-hydraulic proportional VALVE
下载PDF
DYNAMIC CHARACTERISTICS OF LARGE FLOW RATING ELECTROHYDRAULIC PROPORTIONAL CARTRIDGE VALVE 被引量:10
6
作者 FU Linjian WEI Jianhua QIU Minxiu 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2008年第6期57-62,共6页
A kind of cartridge servo proportional valve is discussed, which can be used for controlling large flow rate with high performance. By analyzing the structure principle of the valve, the transfer fimction of the valve... A kind of cartridge servo proportional valve is discussed, which can be used for controlling large flow rate with high performance. By analyzing the structure principle of the valve, the transfer fimction of the valve is derived. With the transfer function, some structure elements that may affect its performance are investigated. Through the numerical simulation and test study, some principles of optimality and effective methods for improving the dynamic performance of the valve are proposed. The test results conform to the results of the theoretical analysis and simulation, which proves the correctness of the study and simulation works. The paper provides theoretical basis for engineering applications and series expanding design works 展开更多
关键词 Large flow rate electro-hydraulic proportional cartridge valve Dynamic characteristics
下载PDF
ROBUST CONTROL OF AN ELECTROHYDRAULIC PROPORTIONAL SPEED CONTROL SYSTEM WITH A SINGLEROD HYDRAULIC ACTUATOR
7
作者 Yang Jian Xu Bing Yang Huayong 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2005年第4期597-602,共6页
A robust control algorithm is proposed to focus on the non-linearity and parameters' uncertainties of an electro-hydraulic proportional speed control system (EHPSCS) with a single-rod hydraulic actuator. The robust... A robust control algorithm is proposed to focus on the non-linearity and parameters' uncertainties of an electro-hydraulic proportional speed control system (EHPSCS) with a single-rod hydraulic actuator. The robust controller proposed does not need to design stable compensator in advance, is simple in design and has large scope of uncertainty applications. The feedback gains of the robust controller proposed are small, so it is easily implemented in engineering applications. Experimental research on the speed control under the different conditions is carried out for an EHPSCS. Experimental results show that the robust controller proposed has better robustness subject to parametric uncertainties, and adaptability of parameters' variation of control system itself and plant parameter variation. 展开更多
关键词 electro-hydraulic proportional speed control system (EHPSCS) Robust control Robustness
下载PDF
A Novel Flower Pollination Algorithm to Solve Load Frequency Control for a Hydro-Thermal Deregulated Power System
8
作者 D. Lakshmi A. Peer Fathima Ranganath Muthu 《Circuits and Systems》 2016年第4期166-178,共13页
Load frequency control plays a vital role in power system operation and control. LFC regulates the frequency of larger interconnected power systems and keeps the net interchange of power between the pool members at pr... Load frequency control plays a vital role in power system operation and control. LFC regulates the frequency of larger interconnected power systems and keeps the net interchange of power between the pool members at predetermined values for the corresponding changes in load demand. In this paper, the two-area, hydrothermal deregulated power system is considered with Redox Flow Batteries (RFB) in both the areas. RFB is an energy storage device, which converts electrical energy into chemical energy, that is used to meet the sudden requirement of real power load and hence very effective in reducing the peak shoots. With conventional proportional-integral (PI) controller, it is difficult to get the optimum solution. Hence, intelligent techniques are used to tune the PI controller of the LFC to improve the dynamic response. In the family of intelligent techniques, a recent nature inspired algorithm called the Flower Pollination Algorithm (FPA) gives the global minima solution. The optimal value of the controller is determined by minimizing the ISE. The results show that the proposed FPA tuned PI controller improves the dynamic response of the deregulated system faster than the PI controller for different cases. The simulation is implemented in MATLAB environment. 展开更多
关键词 Load Frequency control Redox flow Battery proportional Integral controller flower Pollination Algorithm
下载PDF
Parallel Fuzzy P+Fuzzy I+Fuzzy D Controller:Design and Performance Evaluation 被引量:4
9
作者 Vineet Kumar A.P.Mittal 《International Journal of Automation and computing》 EI 2010年第4期463-471,共9页
In this paper, a parallel fuzzy proportional plus fuzzy integral plus fuzzy derivative (FP+FI+FD) controller is proposed. It is derived from the conventional parallel proportional-integral-derivative (PID) contr... In this paper, a parallel fuzzy proportional plus fuzzy integral plus fuzzy derivative (FP+FI+FD) controller is proposed. It is derived from the conventional parallel proportional-integral-derivative (PID) controller. It preserves the linear structure of a conventional parallel PID controller, with analytical formulas. The final shape of the controller is a discrete-time fuzzy version of a conventional parallel PID controller. Computer simulations are performed to evaluate the performance of the FP+FI+FD controller for setpoint tracking and load-disturbance rejection for some complex processes, such as first- and second-order processes with delay, inverse response process with and without delay and higher order processes. Also, the performance of the proposed fuzzy controller is evaluated experimentally on highly nonlinear liquid-flow process with a hysteresis characteristic due to a pneumatic control valve. The simulation and real time control is done using National InstrumentTM hardware and software (LabVIEWTM). The response of the FP+FI+FD controller is compared with the conventional parallel PID controller, tuned with the Ziegler-Nichols (Z-H) and /~strSm- H^gglund (A-H) tuning technique. It is observed that the FP+FI+FD controller performed much better than the conventional PI/PID controller. Simulation and experimental results demonstrate the effectiveness of the proposed parallel FP+FI+FD controller. 展开更多
关键词 proportional-integral-derivative (PID) fuzzy proportional plus fuzzy integral plus fuzzy derivative (FP+FI+FD) controller liquid-flow process inverse response process dead time.
下载PDF
计及高比例新能源多种控制方式及运行约束的连续潮流
10
作者 赵晋泉 汤奕 +2 位作者 党杰 崔挺 陈道君 《电力系统自动化》 EI CSCD 北大核心 2024年第16期123-131,共9页
高比例新能源电网的电压稳定问题突出,连续潮流是电压稳定分析的重要工具。现有含电压源换流器(VSC)电源电网的连续潮流未充分考虑VSC的多种控制方式以及运行约束,导致电压稳定裕度计算的准确性不足。文中提出同时计及新能源并网VSC的... 高比例新能源电网的电压稳定问题突出,连续潮流是电压稳定分析的重要工具。现有含电压源换流器(VSC)电源电网的连续潮流未充分考虑VSC的多种控制方式以及运行约束,导致电压稳定裕度计算的准确性不足。文中提出同时计及新能源并网VSC的输出电流约束和内电势约束,以及考虑构网型新能源恒电压控制、无功功率-电压下垂控制和跟网型新能源恒无功控制的连续潮流模型和计算方法,给出了由约束导致的控制方式切换逻辑和分岔点类型识别方法。通过改造的IEEE 39节点系统算例结果表明,所提模型与算法提升了传统连续潮流方法对高比例新能源电网静态电压稳定分析的适用性。 展开更多
关键词 高比例新能源 电压稳定性 潮流 电压源换流器 切换逻辑 控制方式
下载PDF
高压阀口液动力补偿控制策略仿真分析 被引量:3
11
作者 李海宾 沈俊 +3 位作者 仇智 苏琦 张志豪 徐兵 《液压与气动》 北大核心 2024年第1期1-9,共9页
直动式比例伺服阀是一种新型的单级伺服阀,采用比例电磁铁或线性力马达直接驱动滑阀运动,具有成本低、频响高、抗污染能力强等优点,广泛应用于注塑机进给控制、轧机板厚控制系统等高速高精度液压控制系统中。传统的直动式比例伺服阀采用... 直动式比例伺服阀是一种新型的单级伺服阀,采用比例电磁铁或线性力马达直接驱动滑阀运动,具有成本低、频响高、抗污染能力强等优点,广泛应用于注塑机进给控制、轧机板厚控制系统等高速高精度液压控制系统中。传统的直动式比例伺服阀采用PID控制策略实现阀芯的精确位置控制,在高压大流量工况下(供油压力达到20 MPa、流量大于100 L/min),阀芯受到液动力扰动变得更加剧烈,易出现响应速度慢、阀芯抖动的现象,影响了比例伺服阀的控制精度。为了解决大液动力扰动的问题,提出了一种基于指数收敛干扰观测器的滑模控制器。通过建立阀芯动力学模型来设计滑模控制器,保证阀芯位置的高动态跟踪性能;使用基于指数收敛的干扰观测器,估计阀芯动力学模型中液动力的不确定性扰动,解决高压大流量工况下的阀芯液动力扰动补偿问题。搭建了比例伺服阀系统的联合仿真模型进行仿真验证,结果表明,提出的控制器可以解决高压大流量工况下阀芯液动力扰动对阀芯位置控制的干扰问题。 展开更多
关键词 直动式比例伺服阀 阀芯位置控制 滑模控制 液动力
下载PDF
基于线性自抗扰防卡压力流量回转系统研究
12
作者 唐光伟 闫政 +2 位作者 高有山 孟宏君 王猛 《现代电子技术》 北大核心 2024年第22期125-130,共6页
针对煤巷锚杆支护时岩石强度复杂多变而出现的卡钻现象,提出一种线性自抗扰控制(LADRC)算法,通过控制比例先导压力阀和变转速伺服电动机,合理匹配钻进时的压力和流量。为验证上述方法的合理性,设定负载端为突变和渐变两种围岩硬度变化工... 针对煤巷锚杆支护时岩石强度复杂多变而出现的卡钻现象,提出一种线性自抗扰控制(LADRC)算法,通过控制比例先导压力阀和变转速伺服电动机,合理匹配钻进时的压力和流量。为验证上述方法的合理性,设定负载端为突变和渐变两种围岩硬度变化工况,在AMESim与Matlab/Simulink中进行模型搭建和联合仿真实验,并与滑模控制(SMC)和PID控制进行比较。结果表明:根据负载变化,采用比例先导压力阀实现回转马达变扭矩输出,可以解决钻进过程卡钻问题;采用转速环和电流环双闭环控制的伺服电动机,可以根据负载变化调节系统流量。提出的LADRC控制电动机和压力阀相较于滑模控制和PID控制,超调量更小,具有更好的响应性和鲁棒性。 展开更多
关键词 煤巷锚杆支护 线性自抗扰控制 压力流量匹配 比例压力控制 变速电动机 双闭环控制
下载PDF
新型单心式独立型移相变压器及其调节特性研究
13
作者 梅佳骏 邹丹旦 +3 位作者 余梦泽 张伟哲 叶灶生 袁佳歆 《电力自动化设备》 EI CSCD 北大核心 2024年第4期105-110,共6页
为提升高比例新能源配电网的潮流控制能力和精度,提出了一种新型单心式独立型移相变压器(SCIPST),对调压绕组匝数配置进行了优化,通过独立控制2个调压绕组,SCIPST能够独立调节线路电压的相位和幅值。与传统移相变压器相比,增加了独立调... 为提升高比例新能源配电网的潮流控制能力和精度,提出了一种新型单心式独立型移相变压器(SCIPST),对调压绕组匝数配置进行了优化,通过独立控制2个调压绕组,SCIPST能够独立调节线路电压的相位和幅值。与传统移相变压器相比,增加了独立调节线路电压幅值的功能和可调移相角的数量,提高了调节精度。通过独立调节线路电压相位和幅值,能够在一定范围内实现独立调节线路有功、无功。介绍了SCIPST的拓扑结构,详细分析了工作原理并给出了控制策略。建立了SCIPST的仿真模型,对SCIPST调节电网潮流和电压的稳态和暂态性能进行仿真验证。研制出小容量SCIPST实验模型,搭建了潮流调节特性测试平台,开展了调节潮流模拟实验。仿真和实验结果证明了所提出的SCIPST的可行性和有效性。 展开更多
关键词 高比例新能源配电网 潮流控制 单心式独立型移相变压器 匝数配置优化 独立调节
下载PDF
高比例光伏接入的分布式储能容量自适应协调控制方法 被引量:1
14
作者 柳长发 付立衡 +2 位作者 张增丽 李宏胜 古敬彬 《储能科学与技术》 CAS CSCD 北大核心 2024年第8期2696-2703,共8页
光伏发电具有一定的波动性和不确定性,天气、季节等因素会导致光伏功率的变化,需要储能系统实时跟踪、预测和调整以保持供需平衡,但波动性和不确定性增加了控制的复杂性。为此,提出一种新的分布式储能容量自适应协调控制方法。计算接入... 光伏发电具有一定的波动性和不确定性,天气、季节等因素会导致光伏功率的变化,需要储能系统实时跟踪、预测和调整以保持供需平衡,但波动性和不确定性增加了控制的复杂性。为此,提出一种新的分布式储能容量自适应协调控制方法。计算接入高比例光伏电能后储能无功损耗,设置功率约束条件,确保功率的稳定性。基于此,以电压条件最优、接入负荷和净功率最低、高比例光伏接入处的功率可调节范围最优为调控目标,实现高比例光伏接入的分布式储能容量自适应协调控制。实验数据证明,所提方法在控制效果方面具有显著优势,能够实现高效的分布式储能控制,并确保光伏的高效出力。 展开更多
关键词 高比例光伏接入 分布式储能容量 有功功率 最优潮流控制模型 网损
下载PDF
变转速变排量双动力源泵阀协同电液系统特性分析
15
作者 李琦 杨敬 权龙 《机电工程》 CAS 北大核心 2024年第3期482-493,共12页
针对起重机阀控系统响应快但能耗大,泵控系统效率高但控制精度低的问题,提出了一种变转速变排量双动力源泵阀协同的多执行元件电液系统。首先,提出了一种多模式控制策略,即在单动作微动模式下,其中一个动力源卸荷,由于系统小流量时动态... 针对起重机阀控系统响应快但能耗大,泵控系统效率高但控制精度低的问题,提出了一种变转速变排量双动力源泵阀协同的多执行元件电液系统。首先,提出了一种多模式控制策略,即在单动作微动模式下,其中一个动力源卸荷,由于系统小流量时动态响应较慢,因此小流量时采用双变量模式控制系统,通过阀芯位置自适应调节和动力源的压力闭环控制,实现了流量精准匹配的目的;其次,在单动作快速运动模式下,双动力源合流驱动单执行元件,通过控制电液动力源相关参数,补偿了因负载变化引起的泵泄漏量,以实时控制执行元件速度;在复合快速运动模式下,双动力源分流单独驱动多执行元件,通过调节单个动力源的相关参数来实时控制各执行元件速度,以及实现系统流量比例分流的目的;然后,建立了系统AMESim-Simulink的联合仿真模型与试验平台;最后,对该系统在同一设定压差下的不同设定流量的控制特性进行了仿真和试验分析。研究结果表明:该系统能实现负载变化时对流量的补偿目的,并且该系统与定转速变排量泵阀协同液压系统相比,在单动作微动模式下的流量控制精度优化了约14.76%,动态响应时间减少了约0.12 s;在单动作快速运动模式下,流量变化减小了约6.21%,系统能耗降低约了13.94 kJ;在复合快速运动模式下,系统能耗降低了约50.31 kJ;同时,该系统比传统抗流量饱和负载敏感系统具有更好的流量稳定性。 展开更多
关键词 汽车起重机 变转速变排量 泵阀协同电液系统 压力闭环控制 比例积分微分控制器 流量控制特性 泵泄漏
下载PDF
两通压力补偿器测试方法的研究
16
作者 郑文明 刘森 +1 位作者 刘雨 李鹏来 《液压气动与密封》 2024年第6期91-94,共4页
介绍一种ZDC两通压力补偿器的结构及工作原理,以及两通压力补偿器串联在比例换向阀进油口的流量输出稳定性原理。根据原理分析两通压力补偿器的常见故障,包括:主阀芯无动作、弹簧端面磨损或者断裂、梭阀阀芯卡阻。设计了一种两通压力补... 介绍一种ZDC两通压力补偿器的结构及工作原理,以及两通压力补偿器串联在比例换向阀进油口的流量输出稳定性原理。根据原理分析两通压力补偿器的常见故障,包括:主阀芯无动作、弹簧端面磨损或者断裂、梭阀阀芯卡阻。设计了一种两通压力补偿器的测试方法,能够测试流量与控制信号、压力与控制信号特性曲线。该方法能够快速、准确地诊断两通压力补偿器的常见故障部位,为设备疑难故障分析和两通压力补偿器的修复提供技术参考。 展开更多
关键词 比例换向阀 两通压力补偿器 流量 压力 控制信号
下载PDF
一种电比例控制位移-流量反馈式控制阀
17
作者 徐赟 霍志亮 钱军 《机电产品开发与创新》 2024年第1期123-125,共3页
以流量控制阀为研究对象,针对流量控制阀负载控制稳定性差、流量变化大、易泄露的问题,基于Valvistor节流阀的原理,设计了一种电比例控制位移-流量反馈式控制阀,主要阐述了该流量控制阀的阀体结构和液压桥路原理。通过AMESim建立该流量... 以流量控制阀为研究对象,针对流量控制阀负载控制稳定性差、流量变化大、易泄露的问题,基于Valvistor节流阀的原理,设计了一种电比例控制位移-流量反馈式控制阀,主要阐述了该流量控制阀的阀体结构和液压桥路原理。通过AMESim建立该流量控制阀的阀体和比例电磁铁模型,对其进行分析研究,分析结果表明,该流量控制阀在恒定电信号输入下,出口流量几乎不随负载变化,具有良好的稳定性和可控性,使系统对负载变化不敏感。 展开更多
关键词 流量控制阀 液压桥路 比例电磁铁 负载变化 AMESIM
下载PDF
电液比例负载口独立控制系统压力流量控制策略 被引量:36
18
作者 刘英杰 徐兵 +1 位作者 杨华勇 曾定荣 《农业机械学报》 EI CAS CSCD 北大核心 2010年第5期182-187,共6页
介绍了电液比例负载敏感负载口独立控制系统组成结构和工作原理,建立了该系统的数学仿真模型;针对执行元件的不同工况,分别设计了基于计算流量反馈的速度控制器和基于压力闭环控制的压力控制器,实现了系统的压力流量复合控制;仿真和实... 介绍了电液比例负载敏感负载口独立控制系统组成结构和工作原理,建立了该系统的数学仿真模型;针对执行元件的不同工况,分别设计了基于计算流量反馈的速度控制器和基于压力闭环控制的压力控制器,实现了系统的压力流量复合控制;仿真和实验结果表明,该控制系统有较高的速度控制精度和良好的节能效果。通过变参分析,研究负载口独立阀单元频响和阻尼及死区对系统控制性能的影响,为负载口独立阀单元的开发和应用提供理论指导。 展开更多
关键词 电液比例 计算流量反馈 复合控制 负载口独立阀单元
下载PDF
电液比例流量控制新原理理论及实现 被引量:8
19
作者 权龙 林廷圻 史维祥 《农业机械学报》 EI CAS CSCD 北大核心 1995年第2期83-87,共5页
针对现有电液比例流量控制技术的不足,首次提出一种新的控制原理,仅用一比例节流阀即可闭环精确控制流量,简化了阀的结构。该原理还可使阀具有压力流量复合控制、故障诊断和容错控制等智能功能,研究结果表明新原理阀的动静态性能亦... 针对现有电液比例流量控制技术的不足,首次提出一种新的控制原理,仅用一比例节流阀即可闭环精确控制流量,简化了阀的结构。该原理还可使阀具有压力流量复合控制、故障诊断和容错控制等智能功能,研究结果表明新原理阀的动静态性能亦非常优良。 展开更多
关键词 电液控制 流量控制 比例阀 原理 控制阀
下载PDF
硬岩掘进机比例调速阀选型方法 被引量:9
20
作者 彭欢 张怀亮 +2 位作者 袁坚 邹伟 章国亮 《机械工程学报》 EI CAS CSCD 北大核心 2014年第21期92-98,共7页
针对硬岩掘进机(Tunnel boring machine,TBM)破岩掘进过程中产生的振动对比例调速阀性能的影响,建立基础振动下比例调速阀的选型准则。选择比例调速阀为研究对象,分析其工作原理,建立比例调速阀仿真模型,并对其进行试验验证,仿真分析基... 针对硬岩掘进机(Tunnel boring machine,TBM)破岩掘进过程中产生的振动对比例调速阀性能的影响,建立基础振动下比例调速阀的选型准则。选择比例调速阀为研究对象,分析其工作原理,建立比例调速阀仿真模型,并对其进行试验验证,仿真分析基础振动参数对其流量波动特性的影响规律。以10%的流量偏差值为评定标准,结合实例分析确定TBM比例调速阀的稳定工作区域并建立其选型流程。结果表明:基础振动会引起比例调速阀流量波动而导致其性能失效,新的选型流程满足TBM比例调速阀的工程实际要求。 展开更多
关键词 比例调速阀 基础振动 仿真模型 选型流程
下载PDF
上一页 1 2 7 下一页 到第
使用帮助 返回顶部