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摩擦焊直接能量控制法的研究
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作者 王士元 尚春阳 张贵锋 《西安交通大学学报》 EI CAS CSCD 北大核心 1995年第7期80-84,97,共6页
摩擦焊直接能量控制法是一种以摩擦能量为控制对象的闭环控制方法,采用先进的单片机测控技术及高精度的检测方法,直接检测驱动电机的实时输入功率以获得实时摩擦能量;并以此为闭环控制对象,对焊接过程进行控制.同以往开环控制法相... 摩擦焊直接能量控制法是一种以摩擦能量为控制对象的闭环控制方法,采用先进的单片机测控技术及高精度的检测方法,直接检测驱动电机的实时输入功率以获得实时摩擦能量;并以此为闭环控制对象,对焊接过程进行控制.同以往开环控制法相比,克服了工艺参数的波动对接头质量的影响,从而大大减少了焊前工作量;同时也减少了人为因素对接头质量的影响,使焊接质量达到一个新水平。 展开更多
关键词 摩擦焊 能量控制法 焊接质量 摩擦能量
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能量分离控制算法中参考模型的构造方法 被引量:2
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作者 王淼 谢克明 《太原理工大学学报》 CAS 1999年第6期580-581,589,共3页
针对能量分离控制算法提出一种基于动静参数W,V 相等原则构造参考模型的方法,并对其鲁棒性进行了仿真研究。结果表明此方法比采用辨识方法获得的参考模型更简便。
关键词 能量分离控制 参考模型 鲁棒性 控制系统
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电阻点焊过程及质量控制方法的研究进展 被引量:25
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作者 曾鸿志 单平 《焊接技术》 北大核心 2000年第5期1-3,共3页
较为详细地介绍了几种有代表性的点焊质量控制方法的原理及具体应用 ;重点介绍了动态电阻法和热膨胀电极位移监控法,并简要介绍了点焊质量控制方法的最新发展动态。
关键词 点焊 质量控制 电阻焊 动态电阻 能量控制法
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糖尿病饮食食品交换份法与主食固定法对比分析
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作者 黄中红 董明纲 +2 位作者 杨洪江 王金红 那开宪 《中华临床医药杂志(北京)》 CAS 2004年第23期24-26,共3页
目的 探讨糖尿病饮食食品交换份法的临床效果。方法 随机抽取门诊及住院糖尿病病人80例,40例采取食品交换份法饮食治疗,另40例采取主食固定法作为对照,观察空腹及餐后2h血糖控制情况,血糖及糖化血红蛋白控制满意天数。结果 两组饮... 目的 探讨糖尿病饮食食品交换份法的临床效果。方法 随机抽取门诊及住院糖尿病病人80例,40例采取食品交换份法饮食治疗,另40例采取主食固定法作为对照,观察空腹及餐后2h血糖控制情况,血糖及糖化血红蛋白控制满意天数。结果 两组饮食治疗方法,试验组与对照组血糖分别为:8.96±2.07mmol/L,10.3±4.50mmol/L;餐后2h血糖分别为:9.50±2.68mmol/L.13.46±3.76mmol/L;血糖控制满意天数分别为13.20±2.50天,18.60±lO.60天,糖化血红蛋白控制满意天数分别为:30.20±10.50天,48.30±15.40天,两组结果差异显著(P<0.01)。结论 糖尿病饮食食品交换份法是较好的饮食治疗方法。 展开更多
关键词 糖尿病 饮食疗 食品交换份 主食固定 能量控制法
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气动力辅助变轨的制导研究进展 被引量:1
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作者 吴德隆 彭伟斌 《导弹与航天运载技术》 北大核心 2003年第6期25-31,共7页
作为低成本飞行的气动力辅助变轨是当前和未来的空间和星际探测任务的一个重要策略。基于最优变轨的精度、稳定性和鲁棒性的要求 ,促进了大气飞行的制导发展。尽管最优变轨要遵循性能指标、控制余度或性能和控制余度的组合指标要求来进... 作为低成本飞行的气动力辅助变轨是当前和未来的空间和星际探测任务的一个重要策略。基于最优变轨的精度、稳定性和鲁棒性的要求 ,促进了大气飞行的制导发展。尽管最优变轨要遵循性能指标、控制余度或性能和控制余度的组合指标要求来进行 ,但是实际上可把变轨弧段分成两部分 ,再入后可采用平衡滑行 ,以获得最佳性能要求 ;逸出前的弧段则采用升力降的轨道 ,可增大逸出后近地点的高度 ,而使在希望到达的远地点的速度冲量最小。按照这种升力调制控制原则 ,讨论了 3种制导方法 :即预测校正法、显式制导法和能量控制器法 。 展开更多
关键词 气动力辅助变轨 制导方 预测校正 显式制导 能量控制 控制余度
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含两个忆阻器的隐藏吸引子及其Hamilton能量控制
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作者 慕娜娜 安新磊 续浩南 《山东大学学报(理学版)》 CAS CSCD 北大核心 2019年第9期91-97,共7页
以Kirchhoff定律为理论基础,设计含磁控、荷控两种忆阻器的非线性电路模型。分析系统的平衡点特性时,发现此忆阻系统存在隐藏吸引子,通过仿真关于参数的分岔图、相轨迹、Poincaré映射图,发现其具有丰富的动力学特性,比如,存在混沌... 以Kirchhoff定律为理论基础,设计含磁控、荷控两种忆阻器的非线性电路模型。分析系统的平衡点特性时,发现此忆阻系统存在隐藏吸引子,通过仿真关于参数的分岔图、相轨迹、Poincaré映射图,发现其具有丰富的动力学特性,比如,存在混沌、超混沌、暂态混沌、周期等非线性现象。根据Helmholtz定理计算得出此忆阻系统的Hamilton能量函数,讨论了系统的电容在充放电过程中电流随时间变化时与产生的能量变化关系并提出新的Hamilton能量控制法,通过选择不同的控制参数将忆阻系统的控制到期望的状态。 展开更多
关键词 磁控忆阻器 荷控忆阻器 Helmholtz定理 Hamilton能量 Hamilton能量控制法
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A Novel Energy-regenerative Active Suspension for Vehicles 被引量:9
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作者 郑雪春 喻凡 张勇超 《Journal of Shanghai Jiaotong university(Science)》 EI 2008年第2期184-188,共5页
In order to regenerate electric power from the vibration excited by road unevenness,a novel energy- regenerative active suspension for vehicles was proposed with the description of its structure and its working princi... In order to regenerate electric power from the vibration excited by road unevenness,a novel energy- regenerative active suspension for vehicles was proposed with the description of its structure and its working principle with two modes switched in different operating conditions.Then,the novel active system was modeled and simulated to show the performance improvement in ride comfort in its electrical motor mode.Finally,the performance tests of the actuator prototype were carried out,which proves its capability for damping in its regenerative braking mode.The research results can provide useful guidance for the similar electrical active suspension design and development. 展开更多
关键词 active suspension control algorithm energy regeneration vehicle dynamics
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On Advanced Control Methods toward Power Capture and Load Mitigation in Wind Turbines 被引量:2
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作者 Yuan Yuan Jiong Tang 《Engineering》 SCIE EI 2017年第4期494-503,共10页
This article provides a survey of recently emerged methods for wind turbine control. Multivariate control approaches to the optimization of power capture and the reduction of loads in components under time-varying tur... This article provides a survey of recently emerged methods for wind turbine control. Multivariate control approaches to the optimization of power capture and the reduction of loads in components under time-varying turbulent wind fields have been under extensive investigation in recent years. We divide the related research activities into three categories: modeling and dynamics of wind turbines, active control of wind turbines, and passive control of wind turbines. Regarding turbine dynamics, we discuss the physical fundamentals and present the aeroelastic analysis tools. Regarding active control, we review pitch control, torque control, and yaw control strategies encompassing mathematical formulations as well as their applications toward different objectives. Our survey mostly focuses on blade pitch control, which is considered one of the key elements in facilitating load reduction while maintaining power capture performance. Regarding passive control, we review techniques such as tuned mass dampers, smart rotors, and microtabs. Possible future directions are suggested. 展开更多
关键词 Wind turbine Control approach Power optimization Load mitigation
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On modal energy in civil structural control
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作者 Miao PANG Tie-jiong LOU Ming ZHAO 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2008年第7期878-887,共10页
A new control strategy based on modal energy criterion is proposed to demonstrate the effectiveness of the control system in reducing structural earthquake responses. The modal control algorithm combining LQR(linear q... A new control strategy based on modal energy criterion is proposed to demonstrate the effectiveness of the control system in reducing structural earthquake responses. The modal control algorithm combining LQR(linear quadratic regulator) control algorithm is adopted in the discrete time-history analysis. The various modal energy forms are derived by definition of the generalized absolute displacement vector. A preliminary numerical study of the effectiveness of this control strategy is carried out on a 20-storey framed steel structural model. The controlled performance of the model is studied from the perspectives of both response and modal energy. Results show that the modal energy-based control strategy is very effective in reducing structural responses as well as in consuming a large amount of modal energy,while augmentation of additional generalized control force corresponding to the modes that contain little modal energy is unnecessary,as it does little help to improve the controlled structural performance. 展开更多
关键词 Modal energy Aseismic control LQR (linear quadratic regulator) control algorithm Modal space Generalized single-degree-of-freedom (SDOF) system
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Controlled Entropy and Gauge Theory in Recycling Condensed Matter by Solar Energy
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作者 Nilo Sylvio Costa Serpa 《Journal of Physical Science and Application》 2017年第6期6-14,共9页
This article discusses the physical principles to be considered in a thermodynamic engineering solar system running under operational control algorithms designed to minimize entropy rates. The proposed plant is based ... This article discusses the physical principles to be considered in a thermodynamic engineering solar system running under operational control algorithms designed to minimize entropy rates. The proposed plant is based on scientific foundations established by thermodynamics and classical field theory, and empirical disciplines that deal with properties of chemical elements and with technologies of calorific capture from remote sources. The gauge principle was applied in theoretical formalization as an essential tool in the control background of the entropy rates involved. The industrial system presented was planned to recycle condensed matter within the scope of a solid waste management policy. 展开更多
关键词 Waste THERMODYNAMICS gauge principle PYROLYSIS solar energy cleaner production
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Numerical Simulation of High-Power Synthetic Jet Actuator Flowfield and its Influence on Mixing Control 被引量:1
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作者 Yanming LIU Baoguo WANG Shuyan LIU 《Journal of Thermal Science》 SCIE EI CAS CSCD 2008年第3期207-211,共5页
Detailed two-dimensional unsteady numerical simulation is carried out to investigate a high-power synthetic jet actuator flow field and its design characteristic. Simultaneously, mixing control mechanism of coaxial je... Detailed two-dimensional unsteady numerical simulation is carried out to investigate a high-power synthetic jet actuator flow field and its design characteristic. Simultaneously, mixing control mechanism of coaxial jets with actuators is also studied. Firstly, excitation frequency (rotating speed), piston displacement and its exit slot width have effect on the controlling ability and controlling efficiency of actuator. With the invariable model and con- cerned parameters, the actuator becomes more desirable as the rotating speed increases. Average velocity and maximal velocity at the actuator exit section increase as the piston displacement enlarges or the exit slot width decreases. But the actuator does not always exhibit good performance with the narrower exit. Secondly, the synthetic jets also have the "push" effect on the coaxial jets, which results in the fluctuation of vorticity and temperature distribution of mixing flowfield. Finally, the employment of synthetic jet actuator can achieve mixing enhancement significantly. 展开更多
关键词 High-power synthetic jet actuator Mixing control Exit velocity Mixing enhancement
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Design and optimization of low-energy transfer orbit to Mars with multi-body environment 被引量:3
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作者 LU Yi LI HengNian +4 位作者 LI JiSheng CHE Zheng YANG YiKang YANG Yuan SUN Yang 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2015年第10期1660-1671,共12页
This paper discusses the problem of design and optimization of low-energy transfer orbit with multi-body environment. A new integrative method is proposed to effectively solve the problem, in which the parameterized p... This paper discusses the problem of design and optimization of low-energy transfer orbit with multi-body environment. A new integrative method is proposed to effectively solve the problem, in which the parameterized patched manifolds in CR3BP(circular restricted three-body problems), the shape-based method with multi-body environment, the homotopic method with multi-body environment, and the low-thrust capturing and descending algorithm with multi-body environment are all included. Firstly, the parameters describing the patched manifolds in CR3 BP are optimized until the least total absolute velocity increment has been got, including the employment of the shape-based method with multi-body environment. Secondly, the low-thrust control laws of the transfer orbit are optimized employing the homotopic method with multi-body environment that transfers the fuel optimization problem to an easier energy optimization problem. Thirdly, the low-thrust descending orbit around Mars is computed using the laws proposed in this paper. As a typical example, the Earth-Mars transfer orbit design is discussed. The results showed that the parameters describing the patched manifolds could be optimized by the DE(differential evolution) algorithm effectively; the homotopic method with multi-body environment could get the optimal value that meets the first order optimality conditions; and the low-thrust descending orbit could effectively be captured by Mars and finally become a circular parking orbit around it by the hypothesis control laws proposed in this paper. It shows that the final fuel cost is much less than the optimal transfer in the patched two-body problems. In conclusion, the method proposed in this paper could effectively solve the low-energy low-thrust optimal control problem in multi-body environment for the future deep space explorations. 展开更多
关键词 orbit optimization multi-body patched manifolds LOW-ENERGY LOW-THRUST
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