1) Electromechanical coupling control system
机电耦合控制系统
2) Electromechanical coupling system
机电耦合系统
1.
Classifies and analyzes the electromechanical coupling system of hybrid electric vehicles.
对混合动力电动汽车机电耦合系统的归类进行分析。
2.
For a class of electromechanical coupling system, this paper discusses the stability consistency between the nonlinear multi-time scale model and the relevant reduced order model, and gives the conditions of stability consistence.
针对一类机电耦合系统,讨论了非线性多时间尺度系统与其相应的简化降阶系统稳定性一致问题,给出了稳定一致性的条件;讨论了多时间尺度系统(原始系统)和降阶系统的稳定域边界问题,分析了非线性多时间尺度系统稳定域边界对摄动参数ε的连续依赖性,给出了稳定边界对ε连续依赖的条件。
3.
Dynamic optimization of electromechanical coupling system is a multi-subject problem on mechanics theory.
机电耦合系统动力学优化是多学科交叉的机电一体化理论问题,本文针对该类问题进行了优化方法的研究,提出了指数惯性权粒子群优化算法,并完成其收敛性分析。
3) coupled dynamos system
耦合发电机系统
1.
Adaptive control and synchronization of a coupled dynamos system;
耦合发电机系统的自适应控制与同步
4) electro-meclianical system
机-电耦合系统
5) Hydraulic-mechanical-electric coupled system
水机电耦合系统
6) complex decoupling control system
综合解耦控制系统
1.
A shape and gauge coupling model was established based on systematic and theoretical analysis of the factors affecting shape and gauge,then a shape and gauge complex decoupling control system was developed based on the decoupling design of the model.
对轧制过程中影响板形板厚的各种因素进行了系统的理论分析,建立了板形板厚耦合模型,并在对其进行解耦设计的基础上建立了板形板厚综合解耦控制系统。
补充资料:机电
机械和电力设备的统称:~产品。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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