lpv
- 网络线性变参数;洛匹那韦;线性时变参数;线性参数时变;线性参数变化
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Variable Gain Control Based on LPV and the Application in Aerospace
基于LPV的变增益控制技术及其在航空航天领域的应用
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Performance Analysis of Polynomial LPV System Based on Convex Polyhedron Construction
基于凸多面体构造的多项式LPV系统性能分析
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Variable pitch control for wind energy conversion system with LPV dynamic compensation
LPV动态补偿的风能转换系统变桨距控制
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Robot Manipulator LPV Robust H_ ∞ Controller Design Based on LMI Approach
基于LMI方法的机器人LPV鲁棒H∞控制器设计
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Iterative Learning Controller Design Based on LPV H_ ∞ Feedback for Robotic Manipulator
基于线性变参数H∞反馈的机器人迭代学习控制器设计
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Variable-Speed Variable-Pitch Wind Power Generator Set LPV Gain Scheduling Control
变速变桨距风力发电机组的线性变参数增益调度控制
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The significance of LPV control in improving the widely used gain scheduling control for aeroengines was raised .
分析了LPV控制方法对获得广泛工程应用的航空发动机增益调度控制的改进意义。
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Design of Observer-based Controller of Neutral LPV Systems
中立时滞LPV系统基于观测器的控制器设计
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The designing of autopilot of LPV system based on nonaffine parameter-dependent
基于非仿射参数依赖LPV系统的自动驾驶仪设计
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A new approach was presented to design integrated control of the couple based on the linear parameter-varying ( LPV ) system control theory .
根据线性变参数(LPV)系统设计原理,提出了基于LPV的船舶航向与主机联合控制。
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We use LPV for the rendering of diffuse scenes instead of the global photon map .
我们利用LPV来代替光子图中的全局光子用以渲染场景中漫反射。
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L_2-L_2 control for observer-based LPV systems with time delay
时滞LPV系统基于观测器的L2-L2控制
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In LPV scheme , sensors utilize evaluations of the cooperative neighbors to complete the verification process .
在LPV协议中,传感器节点依靠相互协调合作的邻居的综合评价来完成定位信息的验证工作。
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The LPV direct torque control used a method of stator voltage space vectors subdivision to decrease the torque pulsation .
结合定子电压空间矢量细分方法,可减少电磁转矩的脉动,实现了LPV直接转矩控制。
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The LPV algorithm is used in the controllers design for ship course and main engine integrated control , considering their effect on each other .
综合考虑操舵和主机两方面的因素,将该设计方法应用于船舶航向与主机的联合控制。
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Design of LPV Gain-Scheduling Controller to Uncertain Tailless Aircraft
不确定性无尾飞行器LPV变增益控制器设计
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A prediction error method based modeling and control performance assessment al-gorithm is developed for a type of linear parameter varying ( LPV ) process .
针对一类线性参数时变(LinearParameterVaryingLPV)过程提出了基于预报误差方法的建模和性能评估算法。
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Both local stability analysis of the closed-loop system and a turbofan control experiment revealed the problem of linearization LPV model of aeroengines .
从闭环系统的局部稳定性分析和涡扇发动机控制系统仿真两个角度展示了发动机LPV建模方法的问题。
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Therefore , this paper made the following improvements of LPV algorithm : 1 . First this paper Summarizes and extends the LPV algorithm .
因此本文对LPV算法做了如下改进:1.首先本文总结和扩展了LPV算法。
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Another important contribution of our method is that we analyzed the impact of localization error on location verification and guarantee the accuracy of LPV .
另外,我们的方法分析了定位误差对定位信息验证所造成的影响并保证了LPV的准确性。
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Next we discuss the theory faulty of LPV and relations among audit-related risks and disclose the audit essence ;
讨论了“损失可能论”的理论缺陷和审计理论风险诸概念之间的关系,揭示了审计的本质;
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In recent years linear parameter varying ( LPV ) control have been developed with the development of robust control , and obtained some achievements in non-linear systems control .
近几年来随着鲁棒控制的发展,线性时变参数(LPV)控制方法也得到了一定的发展,并在处理非线性系统上取得了一些成果。
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In addition , an independent variable pitch whole turbine control strategy based on wind turbine LPV model reference self-adaption is designed using model reference self-adaption control theory .
以此,采用模型参考自适应控制理论设计出基于风电机组LPV模型参考自适应的独立变桨整机控制策略。
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Like the LPV protocol , MSL algorithm completes the re-localization of the anomaly nodes utilizing neighborhood of the sensor nodes .
与LPV协议一样,MSL算法依靠节点间的相邻关系来完成异常节点的再定位。
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In this paper quasi-min-max robust model predictive control is proposed for the polytopic linear parameter varying ( LPV ) time-delay systems with constrained control input .
对于输入有约束的LPV时滞系统,提出了准Min-Max鲁棒模型预测控制。
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The fault detection and isolation ( FDI ) filter design problem for a linear parameter varying ( LPV ) model of the longitudinal dynamics of a missile is studied .
研究了导弹竖直平面动力学LPV模型的故障检测和隔离滤波器的设计问题。
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Therefore , discrete LPV repetitive processes emerge as a more reasonable description to account for the parameter drifting phenomenon , and have a great potential in engineering applications .
因此,LPV重复过程成为更合理的描述来解释参数漂移现象并在工程应用方面具有很大的潜力。
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An iterative learning controller based on gain scheduled linear parameter varying ( LPV ) H ∞ feedback for high precision trajectory tracking of uncertain robotic manipulator was presented .
提出了一种基于线性变参数(LPV)H∞反馈的迭代学习控制器,用于不确定性机器人的高精度轨迹跟踪。
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The robust H_ ∞ filtering for a class of continuous-time linear parameter-varying ( LPV ) systems with distributed and discrete delays in states is studied .
研究一类同时具有分布式和离散型时滞的线性参数变化系统的鲁棒H∞滤波问题。
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Part II . This part considers the gain-scheduled H_ ∞ filter design problem for a class of LPV systems being of non-linear fractional transformation ( NFT ) structure .
第二部分:研究了一类具有非线性分式变换(NFT)结构的离散时间LPV系统的变增益H∞滤波器设计问题。