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Integrated Optimization of Structure and Control Parameters for the Height Control System of a Vertical Spindle Cotton Picker 被引量:1
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作者 Xingzheng Chen Congbo Li +2 位作者 Rui Hu Ning Liu Chi Zhang 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2021年第6期405-416,共12页
Vertical picking method is a predominate method used to harvest cotton crop.However,a vertical picking method may cause spindle bending of the cotton picker if spindles collide with stones on the cotton field.Thus,how... Vertical picking method is a predominate method used to harvest cotton crop.However,a vertical picking method may cause spindle bending of the cotton picker if spindles collide with stones on the cotton field.Thus,how to realize a precise height control of the cotton picker is a crucial issue to be solved.The objective of this study is to design a height control system to avoid the collision.To design it,the mathematical models are established first.Then a multi-objective optimization model represented by structure parameters and control parameters is proposed to take the pressure of chamber without piston,response time and displacement error of the height control system as the opti-mization objectives.An integrated optimization approach that combines optimization via simulation,particle swarm optimization and simulated annealing is proposed to solve the model.Simulation and experimental test results show that the proposed integrated optimization approach can not only reduce the pressure of chamber without piston,but also decrease the response time and displacement error of the height control system. 展开更多
关键词 Cotton picker height control system Structure parameters control parameters Integrated optimization
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Investigation on full vehicle height control algorithm using feedback linearization method
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作者 陈思忠 刘畅 +2 位作者 吴志成 杨林 赵玉壮 《Journal of Beijing Institute of Technology》 EI CAS 2016年第2期172-180,共9页
Aiming to improve the control accuracy of the vehicle height for the air suspension system,deeply analyzing the processes of variable mass gas thermodynamics and vehicle dynamics,a nonlinear height control model of th... Aiming to improve the control accuracy of the vehicle height for the air suspension system,deeply analyzing the processes of variable mass gas thermodynamics and vehicle dynamics,a nonlinear height control model of the air suspension vehicle was built. To deal with the nonlinear characteristic existing in the lifting and lowering processes,the nonlinear model of vehicle height control was linearized by using a feedback linearization method. Then,based on the linear full vehicle model,the sliding model controller was designed to achieve the control variables. Finally,the nonlinear control algorithm in the original coordinates can be achieved by the inverse transformation of coordinates. To validate the accuracy and effectiveness of the sliding mode controller,the height control processes were simulated in Matlab,i. e.,the lifting and lowering processes of the air suspension vehicle were taken when vehicle was in stationary and driving at a constant speed. The simulation results show that,compared to other controllers,the designed sliding model controller based on the feedback linearization can effectively solve the "overshoot"problem,existing in the height control process,and force the vehicle height to reach the desired value,so as to greatly improve the speed and accuracy of the height control process. Besides,the sliding mode controller can well regulate the roll and pitch motions of the vehicle body,thereby improving the vehicle's ride comfort. 展开更多
关键词 full vehicle height control feedback linearization sliding model control
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A Fine-grained Building Height Control Method for Heritage Areas from the Perspective of Visual Integrity
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作者 WANG Xi HOU Miaole CHEN Fan 《Journal of Geodesy and Geoinformation Science》 CSCD 2024年第2期66-79,共14页
This study proposes a refined methodology for controlling building heights in heritage areas.In order to protect the visual integrity of the heritage area,buildings should not obstruct the view from important site poi... This study proposes a refined methodology for controlling building heights in heritage areas.In order to protect the visual integrity of the heritage area,buildings should not obstruct the view from important site points and viewpoints to the periphery.By calculating the building height thresholds that buildings should not obscure the view from each viewpoint,the results of which are weighted and superimposed,and the values are extracted to each building unit as a refined building height control guideline.This study takes the Zhoukoudian area as a case study,applies the refined building height control criterion to the Zhoukoudian Site,and relies on this refined criterion to assess the visual integrity of the Zhoukoudian area,so as to realize the scientific planning and monitoring of the Zhoukoudian area.The refined building height control method can be applied to building height planning and visual landscape protection in large heritage areas. 展开更多
关键词 building height control visual integrity assessment observation points
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A Hybrid Approach to Modeling and Control of Vehicle Height for Electronically Controlled Air Suspension 被引量:8
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作者 SUN Xiaoqiang CAI Yingfeng +2 位作者 WANG Shaohua LIU Yanling CHEN Long 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2016年第1期152-162,共11页
The control problems associated with vehicle height adjustment of electronically controlled air suspension (ECAS) still pose theoretical challenges for researchers, which manifest themselves in the publications on t... The control problems associated with vehicle height adjustment of electronically controlled air suspension (ECAS) still pose theoretical challenges for researchers, which manifest themselves in the publications on this subject over the last years. This paper deals with modeling and control of a vehicle height adjustment system for ECAS, which is an example of a hybrid dynamical system due to the coexistence and coupling of continuous variables and discrete events. A mixed logical dynamical (MLD) modeling approach is chosen for capturing enough details of the vehicle height adjustment process. The hybrid dynamic model is constructed on the basis of some assumptions and piecewise linear approximation for components nonlinearities. Then, the on-off statuses of solenoid valves and the piecewise approximation process are described by propositional logic, and the hybrid system is transformed into the set of linear mixed-integer equalities and inequalities, denoted as MLD model, automatically by HYSDEL. Using this model, a hybrid model predictive controller (HMPC) is tuned based on online mixed-integer quadratic optimization (MIQP). Two different scenarios are considered in the simulation, whose results verify the height adjustment effectiveness of the proposed approach. Explicit solutions of the controller are computed to control the vehicle height adjustment system in realtime using an offline multi-parametric programming technology (MPT), thus convert the controller into an equivalent explicit piecewise affine form. Finally, bench experiments for vehicle height lifting, holding and lowering procedures are conducted, which demonstrate that the HMPC can adjust the vehicle height by controlling the on-off statuses of solenoid valves directly. This research proposes a new modeling and control method for vehicle height adjustment of ECAS, which leads to a closed-loop system with favorable dynamical properties. 展开更多
关键词 electronically controlled air suspension vehicle height control hybrid system mixed logical dynamical model predictive control
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Hierarchical Control of Ride Height System for Electronically Controlled Air Suspension Based on Variable Structure and Fuzzy Control Theory 被引量:15
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作者 XU Xing ZHOU Kongkang +2 位作者 ZOU Nannan JIANG Hong CUI Xiaoli 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2015年第5期945-953,共9页
The current research of air suspension mainly focuses on the characteristics and design of the air spring. In fact, electronically controlled air suspension (ECAS) has excellent performance in flexible height adjust... The current research of air suspension mainly focuses on the characteristics and design of the air spring. In fact, electronically controlled air suspension (ECAS) has excellent performance in flexible height adjustment during different driving conditions. However, the nonlinearity of the ride height adjusting system and the uneven distribution of payload affect the control accuracy of ride height and the body attitude. Firstly, the three-point measurement system of three height sensors is used to establish the mathematical model of the ride height adjusting system. The decentralized control of ride height and the centralized control of body attitude are presented to design the ride height control system for ECAS. The exact feedback linearization method is adopted for the nonlinear mathematical model of the ride height system. Secondly, according to the hierarchical control theory, the variable structure control (VSC) technique is used to design a controller that is able to adjust the ride height for the quarter-vehicle anywhere, and each quarter-vehicle height control system is independent. Meanwhile, the three-point height signals obtained by three height sensors are tracked to calculate the body pitch and roll attitude over time, and then by calculating the deviation of pitch and roll and its rates, the height control correction is reassigned based on the fuzzy algorithm. Finally, to verify the effectiveness and performance of the proposed combined control strategy, a validating test of ride height control system with and without road disturbance is carried out. Testing results show that the height adjusting time of both lifting and lowering is over 5 s, and the pitch angle and the roll angle of body attitude are less than 0.15°. This research proposes a hierarchical control method that can guarantee the attitude stability, as well as satisfy the ride height tracking system. 展开更多
关键词 electronically controlled air suspension (ECAS) ride height body attitude hierarchical control
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Fuzzy Sliding Mode Control for the Vehicle Height and Leveling Adjustment System of an Electronic Air Suspension 被引量:10
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作者 Xiao-Qiang Sun Ying-Feng Cai +2 位作者 Chao-Chun Yuan Shao-Hua Wang Long Chen 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2018年第2期238-250,共13页
The accurate control for the vehicle height and leveling adjustment system of an electronic air suspension(EAS) still is a challenging problem that has not been effectively solved in prior researches. This paper propo... The accurate control for the vehicle height and leveling adjustment system of an electronic air suspension(EAS) still is a challenging problem that has not been effectively solved in prior researches. This paper proposes a new adaptive controller to control the vehicle height and to adjust the roll and pitch angles of the vehicle body(leveling control) during the vehicle height adjustment procedures by an EAS system. A nonlinear mechanism model of the full?car vehicle height adjustment system is established to reflect the system dynamic behaviors and to derive the system optimal control law. To deal with the nonlinear characters in the vehicle height and leveling adjustment processes, the nonlinear system model is globally linearized through the state feedback method. On this basis, a fuzzy sliding mode controller(FSMC) is designed to improve the control accuracy of the vehicle height adjustment and to reduce the peak values of the roll and pitch angles of the vehicle body. To verify the effectiveness of the proposed control method more accurately, the full?car EAS system model programmed using AMESim is also given. Then, the co?simulation study of the FSMC performance can be conducted. Finally, actual vehicle tests are performed with a city bus, and the test results illustrate that the vehicle height adjustment performance is effectively guaranteed by the FSMC, and the peak values of the roll and pitch angles of the vehicle body during the vehicle height adjustment procedures are also reduced significantly. This research proposes an effective control methodology for the vehicle height and leveling adjustment system of an EAS, which provides a favorable control performance for the system. 展开更多
关键词 Electronic air suspension height adjustment Leveling control Fuzzy sliding mode control Vehicle tests
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Improvement of Grain Size and Dome Height of Microalloyed Steels Using Taguchi Method Based on Grey Relational Grade in Controlled Rolling 被引量:2
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作者 Mohsen Ayaz Daavood Mirahmadi Khaki Nasrollah Bani Mostafa Arab 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2013年第12期115-123,共9页
An efficient approach was introduced for improving the condition of major controlled rolling process pa- rameters of roughing, finishing and coiling temperatures and optimizing these parameters to obtain minimum grain... An efficient approach was introduced for improving the condition of major controlled rolling process pa- rameters of roughing, finishing and coiling temperatures and optimizing these parameters to obtain minimum grain size and maximum dome height simultaneously. Taguchi method combined with grey relational analysis was applied to achieve optimum grain size and dome height during controlled rolling process. For this purpose, four levels for the above temperatures were chosen and sixteen experiments were conducted based on orthogonal array of Taguchi meth- od. Based on Taguchi approach, signal-to-noise (S/N) ratios were calculated and used in order to obtain the opti- mum levels for every input parameter. Analysis of variance revealed that finishing and coiling temperatures have the maximum effect on the grain size and dome height of microalloyed steels. The confirmation tests with the optimal levels of parameters indicated that the grain size and dome height of controlled rolled microalloyed steels can be im- proved effectively through this approach. 展开更多
关键词 controlled rolling microalloyed steel dome height grain size Taguchi method grey relational grade
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Numerical Simulation of Active Control on Tip Leakage Flow in Axial Turbine 被引量:6
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作者 李伟 乔渭阳 +1 位作者 许开富 罗华铃 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2009年第2期129-137,共9页
In an effort to reduce the blade tip clearance leakage in turbine designs, this article aims to numerically investigate the effects of active jet-flow injected from the blade tip platform upon the blade tip clearance ... In an effort to reduce the blade tip clearance leakage in turbine designs, this article aims to numerically investigate the effects of active jet-flow injected from the blade tip platform upon the blade tip clearance flow. A CFD code integrated with dense-correction-based 3D Reynolds-averaged Navier-Stokes equations together with the well-proven Reynolds stress model (RSM) is adopted. The variation of specific heat is taken into consideration. The effects of jet-flow on the tip clearance flow are simulated ... 展开更多
关键词 tip clearance height INJECTION tip leakage vortex active control numerical simulation
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Experimental Study on the Distribution of Soil Nitrate and Ammonium Nitrogen under Controlled Drainage 被引量:2
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作者 YANG Lin HUANG Jiesheng +1 位作者 ZHAO Lirong HUANG Zhiqiang 《Wuhan University Journal of Natural Sciences》 CAS 2009年第6期532-536,共5页
A field experimental project was set up to assess the effects of controlled drainage on the distribution and concentration of nitrogen in the soil at the Irrigation and Drainage Experimental Station under Four-Lake En... A field experimental project was set up to assess the effects of controlled drainage on the distribution and concentration of nitrogen in the soil at the Irrigation and Drainage Experimental Station under Four-Lake Engineering Administration of Jingzhou City,Hubei Province.Two plots drain runoff by controlled drainage system,with an area of 0.1 hm^2(20 m×50 m)each.The third one with an area of 0.04 hm^2(8 m×50 m)has a conventional subsurface drainage system.Under this experimental condition,the study draws the following conclusions:①The controlled drainage system has a remarkable effect on the diminishing ratios of nitrate nitrogen between neighboring layers.It is presented that the diminishing ratio increases with the raising height of drain outlet.Controlled drainage system also reduces the transference of nitrate nitrogen in topsoil.②Different from nitrate nitrogen,the concentration of ammonium nitrogen is stable along the longitudinal section of soil,which is little affected by the controlled drainage system.It indicates that the concentration of ammonium nitrogen decreases according to the lowering of controlling height of the drain outlet. 展开更多
关键词 controlled drainage nitrate nitrogen ammonium nitrogen controlling height of drain outlet
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THEORETICAL AND EXPERIMENTAL STUDY ON THE PRESSURE AND VACUUM CONTINUOUS CONTROL SYSTEM BASED ON HYBRID PUMP 被引量:3
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作者 LI Jinyun DU Jingmin FU Xiaoyun LI Baoren 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2007年第6期74-78,共5页
A novel pressure and vacuum continuous control system, which adopts a hybrid pump as pressure and vacuum source, is presented. The mathematical model of the system is developed. The theoretical simulation and analysis... A novel pressure and vacuum continuous control system, which adopts a hybrid pump as pressure and vacuum source, is presented. The mathematical model of the system is developed. The theoretical simulation and analysis on the system are implemented in order to study the relationships among the characteristics, parameters and working points of the system. The experimental investigations on the system characteristics are presented with the adoption ofa fuzzy-PID controller. The simulation and experimental results indicate that the pressure and vacuum continuous control system based on hybrid pump has good dynamic and static performance, strong robustness and satisfactory adaptability to various system parameters. According to the results, system can successfully gain high accuracy and fast response signal. Also, the mathematical model of system is also testified by the experimental results. 展开更多
关键词 Hybrid pump Pressure and vacuum continuous control Fuzzy-PID control Semi-physical flight height simulation
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Study of measurement and control of free loop of hot steel strip in twin-roll strip casting
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作者 YE Changhong FANG Yuan ZHANG Qing 《Baosteel Technical Research》 CAS 2018年第1期27-33,共7页
In the twin-roll strip casting process, hot cast strips can be broken or tom if the casting speed does not match the rolling speed. Usually, a certain length of hot steel strip is hung freely between the caster and ro... In the twin-roll strip casting process, hot cast strips can be broken or tom if the casting speed does not match the rolling speed. Usually, a certain length of hot steel strip is hung freely between the caster and rolling mill to deal with the effect of this speed difference. In this paper,the freely hanging hot steel strip is referred to as the free loop of hot steel strip. Accurately measuring and controlling the height of this free loop is the key factor in maintaining a stable casting operation. Several methods for measuring the loop height of a steel strip are discussed and a method for accurately measuring and controlling the free loop height of hot steel strip is presented. Based on the results of the casting loop quantity change curve, this control method is confirmed to be effective and able to meet the requirements of continuous casting strip production. 展开更多
关键词 twin-roll strip casting free loop height of free loop measurement method measurement error control of free loop height
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视距概率下无人机静态部署与能效优化策略
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作者 彭艺 朱昊 +3 位作者 杨青青 吴桐 王健明 李辉 《湖南大学学报(自然科学版)》 北大核心 2025年第4期91-102,共12页
无人机通信面临路径损耗和组间干扰等问题.为了满足离散用户通信需求,实现无人机组网的静态部署并最大化能效,本文针对多比凹凸函数分式规划问题进行研究,提出一种凸优化协同群体智能优化策略,该策略将原问题解耦为功率控制与高度优化... 无人机通信面临路径损耗和组间干扰等问题.为了满足离散用户通信需求,实现无人机组网的静态部署并最大化能效,本文针对多比凹凸函数分式规划问题进行研究,提出一种凸优化协同群体智能优化策略,该策略将原问题解耦为功率控制与高度优化问题并迭代求解.首先,引入视距概率路径损耗模型,通过俯仰角研究部署高度与水平距离之间关系,将部署问题三维化.其次,利用二次变换解耦原问题,旨在提升视距概率链路下的系统能效.最后,提出快速反馈粒子群算法对高度进行部署,以解决复杂多目标协同优化问题.仿真结果表明,在本文模型下,该策略能够实现算法复杂度与准确性之间平衡,对无人机基站进行高效准确部署. 展开更多
关键词 无人机通信 视距概率 能效优化 功率控制 高度部署
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Improvement of Mongolian Height System Using a Satellite Technology
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作者 Sodnom Enkhtuya Damdinsuren Amarsaikhan 《Open Journal of Applied Sciences》 2020年第4期154-168,共15页
In recent years, development of a proper country-specific height system has become a major challenge for the scholars and specialists working in the field of geodesy. The National Geodetic Services of many countries a... In recent years, development of a proper country-specific height system has become a major challenge for the scholars and specialists working in the field of geodesy. The National Geodetic Services of many countries are trying to establish a new system that can provide the customers and decision-makers with high accuracy basic geodetic data obtained by modern satellite measurements. Although, Mongolia has a long tradition with geodesy and land surveying, the country still lacks a refined height system that can be effectively used for mapping and other purposes. In the present study, we tried to solve the problem related to the Mongolian height system using of a modern satellite technology. The research had some very important results: 1) evaluation of the main height network and height system of Mongolia, 2) development of a new method for calculating the normal height system in Mongolia, and 3) creation of the height unified system by considering surface potential of the global ellipsoidal level as normal. 展开更多
关键词 height System ASTRONOMY GEODETIC control NETWORK (AGCN) High ACCURACY GEODETIC NETWORK (HAGN) State GEODETIC NETWORK (SGN)
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近松散承压含水层下俯伪斜工作面安全控水技术研究
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作者 张炜 曹林超 +3 位作者 张东升 朱乐章 李红光 郭佳炜 《采矿与安全工程学报》 北大核心 2025年第6期1313-1323,共11页
有效实现顶板水安全防控是众多矿井亟待解决的技术难题之一。以淮北煤田祁南煤矿312工作面为工程背景,简要介绍了研究区水文地质条件,明确了“四含水”和砂岩裂隙水为工作面的主要充水水源。基于经验公式、数值模拟及现场观测方法,综合... 有效实现顶板水安全防控是众多矿井亟待解决的技术难题之一。以淮北煤田祁南煤矿312工作面为工程背景,简要介绍了研究区水文地质条件,明确了“四含水”和砂岩裂隙水为工作面的主要充水水源。基于经验公式、数值模拟及现场观测方法,综合对比确定了研究区采动覆岩冒落带和导水裂隙带发育高度分别为15.80、49.96 m,冒采比和裂采比分别为6.22、19.67。在此基础上,确定了留设安全防砂煤岩柱的合理性,校验了原始设计的安全防砂煤岩柱留设高度(43.9~45.7 m)能够满足规范所要求的临界值(29.24 m),并基于采动顶板渗透性进一步评价了防砂煤岩柱的安全性。根据工作面采动条件下动态水和静态水的预测结果,设计了顶板水疏放技术方案并成功应用于现场。应用结果表明,工作面涌水量变化呈现出“整体增高—局部降低—最后稳定”的趋势,实测最大涌水量为预测最大值的68.3%,可有效防止顶板水灾事故的发生。研究成果可为其他类似条件工作面安全控水提供参考和示范。 展开更多
关键词 松散承压含水层 安全控水 “两带”高度 防砂煤岩柱 疏放水
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2020珠峰高程测量BDS-3数据质量分析 被引量:1
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作者 杨强 党亚民 +2 位作者 蒋光伟 马新莹 孙洋洋 《导航定位学报》 北大核心 2025年第2期20-27,共8页
2020年珠峰高程测量首次以国产北斗卫星导航系统(BDS)接收机为核心装备,获取了北斗三号全球卫星导航系统(BDS-3)高精度观测数据。为了确保成果的可靠性,利用天宝(Trimble)接收机对国产接收机BDS-3观测结果进行检核。针对珠峰地形环境限... 2020年珠峰高程测量首次以国产北斗卫星导航系统(BDS)接收机为核心装备,获取了北斗三号全球卫星导航系统(BDS-3)高精度观测数据。为了确保成果的可靠性,利用天宝(Trimble)接收机对国产接收机BDS-3观测结果进行检核。针对珠峰地形环境限制导致全球卫星导航系统(GNSS)观测网形不佳、峰顶GNSS观测时间短等难题,提出三级控制策略相结合的GNSS观测网数据处理方案,通过构建地区GNSS基准网、局部GNSS控制网和峰顶联测网,在极其有限的珠峰观测时段内最大化地优化提取高质量GNSS观测数据。为了验证BDS-3观测数据的精度,对比全球定位系统(GPS)和BDS-3数据解算结果,并检核GNSS数据处理与分析软件(GPAS)/加米特(GAMIT)2种软件的BDS解算结果,结果表明,BDS-3处理结果精度与GPS成果精度相当,高程方向精度均优于2 cm,坐标差异均优于1 cm,验证了本次珠峰测高BDS-3观测成果的精度和可靠性。 展开更多
关键词 珠穆朗玛峰 数据处理 全球卫星导航系统(GNSS)控制网 高程测量 北斗三号全球卫星导航系统(BDS-3) 质量评估
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3WSH-500型喷雾机喷杆高度调控系统设计与试验 被引量:1
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作者 吴建国 杨硕 +1 位作者 李成前 翟长远 《农机化研究》 北大核心 2025年第3期121-129,共9页
针对地面起伏造成喷雾机喷杆高度波动的问题,以永佳3WSH-500型喷雾机为试验平台,电动推杆为喷杆高度调节驱动部件,采用滞环控制原理,设计了基于超声探测的喷杆高度调控系统。首先,对3种路面(水泥地路面、田间未耕路面和田间翻耕路面)下... 针对地面起伏造成喷雾机喷杆高度波动的问题,以永佳3WSH-500型喷雾机为试验平台,电动推杆为喷杆高度调节驱动部件,采用滞环控制原理,设计了基于超声探测的喷杆高度调控系统。首先,对3种路面(水泥地路面、田间未耕路面和田间翻耕路面)下超声波传感器反馈电流信号与喷杆高度的探测曲线进行标定试验,获得3种路面喷杆高度监测曲线。其次,开展喷杆高度调节静态试验,通过改变喷杆高度,获得了静态调节下喷杆高度调节响应曲线,确定静态最优滞环值为10 mm。开展了3种路面下不同车速对喷杆高度调节的性能试验及性能对照试验,根据喷杆高度趋于稳态时的振颤范围,确定动态最优滞环值为50 mm,喷杆高度设定为1 000 mm,车速为2.5、5.0、6.0、8.0 km/h。试验结果表明:车速对系统喷杆高度的调控性能影响较小,而地面起伏对系统喷杆高度调控稳定性具有显著影响,以动态性能对照试验作为对照组,田间未耕地路面的控制合格率由83%~95%提升至93%~97%,在地形波动较大的田间翻耕路面,喷杆高度控制合格率由2%~16%提升至72%~87%。该研究可为喷杆高度调控性能提升提供技术参考。 展开更多
关键词 喷杆喷雾机 喷杆高度调控 地面起伏 超声探测
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空气悬架高度调节预设性能Backstepping控制
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作者 安润兴 王百键 +2 位作者 唐传茵 梁忠超 赵晶 《控制工程》 北大核心 2025年第11期1947-1954,共8页
电控空气悬架可通过调节车身高度来提升车辆舒适性和操纵稳定性。针对空气悬架系统的调高,建立了四分之一车辆空气悬架模型,并设计了一种结合预设性能函数与Backstepping方法的车辆高度调节控制器,来保证:①车辆的行驶高度收敛在期望高... 电控空气悬架可通过调节车身高度来提升车辆舒适性和操纵稳定性。针对空气悬架系统的调高,建立了四分之一车辆空气悬架模型,并设计了一种结合预设性能函数与Backstepping方法的车辆高度调节控制器,来保证:①车辆的行驶高度收敛在期望高度的附近;②调高过程中的高度跟踪误差在性能函数边界内。此外,考虑在实际应用过程中,空气弹簧内气压传感器的缺失,设计了一种滑模观测器对空气弹簧内气压进行估计。最后,通过AMESim与Simulink联合仿真和硬件在环测试,验证了所提控制器的效能与应用性。 展开更多
关键词 空气悬架 高度控制 预设性能 BACKSTEPPING控制 硬件在环
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超大采高工作面装备群智能协同控制关键技术
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作者 张德生 周杰 +3 位作者 任怀伟 冯银辉 韩会军 巩师鑫 《煤炭技术》 2025年第10期1-5,共5页
为提高超大采高工作面装备群智能化水平,以曹家滩煤矿10 m超大采高工作面为例,分析了超大采高工作面装备群在围岩载荷、煤层厚度、截割阻力以及输送机煤量变化显著等复杂工作环境影响下,面临着围岩动载监测、直线度控制、工作面与超前... 为提高超大采高工作面装备群智能化水平,以曹家滩煤矿10 m超大采高工作面为例,分析了超大采高工作面装备群在围岩载荷、煤层厚度、截割阻力以及输送机煤量变化显著等复杂工作环境影响下,面临着围岩动载监测、直线度控制、工作面与超前支护装备协同控制等难题。针对上述问题,提出工作面“采-支-运”和“工作面-超前支架”协同智能开采工艺,构建基于态势变化的装备群协同控制机制;开发基于高频采样、视觉分析等先进技术的装备群工作状态监测装置,研制缓冲立柱、闭环控制油缸等新型执行机构以及运-支一体式智能化超前支护系统,构建以工艺为驱动、数据为引擎的超大采高工作面智能开采模式。研究成果将提升超大采高工作面装备群协同程度,为智能化工作面建设和产品研发提供借鉴。 展开更多
关键词 超大采高工作面 装备群 动态载荷 协同控制
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10 m超大采高液压支架关键结构及其承载特性 被引量:1
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作者 韩会军 雷亚军 +2 位作者 张金虎 韩存地 曾明胜 《煤炭学报》 北大核心 2025年第4期1993-2004,共12页
针对10 m超大采高综采工作面围岩控制需求,研发了ZYA29000/45/100D两柱掩护式超大采高液压支架。阐述了超大采高采场围岩垮落及矿压显现特点,总结了10 m超大采高工作面注重顶板、煤壁防护及承受强动载的支护需求;在此基础上研发了10 m... 针对10 m超大采高综采工作面围岩控制需求,研发了ZYA29000/45/100D两柱掩护式超大采高液压支架。阐述了超大采高采场围岩垮落及矿压显现特点,总结了10 m超大采高工作面注重顶板、煤壁防护及承受强动载的支护需求;在此基础上研发了10 m超大采高液压支架,给出液压支架结构关键参数,配套双层伸缩梁+三级协动护帮、?630 mm大缸径抗冲击立柱等创新结构,具备断面全防护、结构抗冲击、架体自稳定等技术特点;以结构稳定性为切入点,在分析工作面倾角及采高对支架稳定性影响的基础上,研究了液压支架对不同工作面倾角及采高的适应性,分析得出支架横向临界倾倒角度为12°,适应采高7~10 m,液压支架在正常工作区域内,其理论支护效率并不会有较大变化,而掩护梁受载是超大采高液压支架与小采高支架的最大区别;针对两柱掩护式支架承载特点,分析了不同支架参数下顶梁力平衡承载区域及其迁移特性,两柱式掩护式支架力平衡区主要集中于立柱部位,立柱与顶梁铰接点位置的变化对力平衡区影响显著,平衡千斤顶参数的变化对力平衡区的影响有限;分析了不同型式护帮结构的煤壁防护性能,阐明双层伸缩梁+三级协动护帮结构在防护力度、防护面积等方面具有明显的优势;通过分析支架在增阻状态下的等效刚度,建立了液压支架动载力学仿真模型,通过模拟试验方法研究了其在“给定变形”工作状态下承受动态载荷的响应过程,得出顶梁承受动载主要通过立柱传递、掩护梁承受动载主要通过四连杆机构进行传递的特点;分析了支架在曹家滩煤矿122104工作面的使用情况,说明ZYA29000/45/100D对10 m超大采高工作面有较好的适应性,且满足工作面超大采高围岩控制需求。 展开更多
关键词 超大采高 液压支架 围岩控制 工作面支护 支护技术及装备
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足部位置和座椅高度对脑瘫儿童坐-站转移下肢运动学和动力学参数的影响
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作者 李文静 高晓 +3 位作者 李爱华 倪燕 孙威 王疆娜 《中国组织工程研究》 CAS 北大核心 2025年第21期4469-4476,共8页
背景:足位和座椅高度是影响“坐-站转移”的重要因素,但目前对“坐-站转移”动作的研究多侧重于健康人群和帕金森患者,痉挛型脑瘫儿童在不同座椅高度和足部位置下执行“坐-站转移”任务中的下肢运动学和动力学特征尚未可知。目的:探究... 背景:足位和座椅高度是影响“坐-站转移”的重要因素,但目前对“坐-站转移”动作的研究多侧重于健康人群和帕金森患者,痉挛型脑瘫儿童在不同座椅高度和足部位置下执行“坐-站转移”任务中的下肢运动学和动力学特征尚未可知。目的:探究不同足部位置及座椅高度对脑瘫儿童执行“坐-站转移”任务过程中下肢运动学和动力学参数的影响。方法:选择7名痉挛型脑瘫儿童作为研究对象,对其进行6个任务即3种座椅高度(高、中、低凳)×2种足位(前、后足位)的“坐-站转移”动作测试,采集脑瘫儿童在不同足位和座椅高度下“坐-站转移”时的运动学和动力学数据。结果与结论:(1)时间特征结果表明,相较于低凳条件,脑瘫儿童在高凳条件下进行“坐-站转移”任务所需总时间显著减少(P=0.046);(2)动力学结果表明,抬离瞬间,双足后位条件下的膝关节屈曲力矩显著大于双足前位条件(P=0.049);相较于中凳条件,在高凳条件下膝关节屈曲力矩显著减小(P <0.001);(3)结果提示抬高座椅高度和改变足位条件均对痉挛型脑瘫儿童的“坐-站转移”表现有影响,在高凳双足后位条件下儿童使用较小的运动补偿就可以完成坐站动作;同时高座椅可作为痉挛型脑瘫儿童增强“坐-站转移”表现的辅助工具,高凳双足后位条件更有助于脑瘫儿童“坐-站转移”动作的完成。 展开更多
关键词 痉挛型脑瘫 足位 座椅高度 坐-站转移 姿势控制
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