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单级倒立摆LQR控制仿真 最优控制理论主要通过对性能的优化寻找可以使目标极小的控制器-Inverted Pendulum Control Simulation of LQR optimal control theory, mainly through the optimization of the performance objectives can find a very small controller
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Example: Distributed Wireless Control System,可用于无线传感器网络中-This example shows distributed control of a DC-servo using
communication over a wireless network. The example also shows how to
simulate power consumption and how to use the battery block.
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实现无线传感网络的结点控制,可以高效实现无线传感器网络节点的分簇,对无线传感器网络功率控制进行仿真-Power control in sensor network
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运用于风力发电系统的直接转矩系统仿真源代码,绝对RUN的起来-Used in wind power generation system of direct torque control system simulation source code, the absolute RUN' s up
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认知无线电中非合作博弈功率控制中的K-G算法-Cognitive Radio China-Africa Cooperation in KG games power control algorithm
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OptWoPC: optimization code without power control
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pid control
PID CONTROL OF INFRARED RADIATIVE POWER
PROFILE FOR CERAMIC EMITTERS
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In this paper, in control theory, sliding mode control, or SMC, is a form of variable structure control (VSC). It is a nonlinear control method that alters the dynamics of a nonlinear system by application of a high-frequency switching control. The s
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matlab code to use control theory to design an output feedback system for a WSCC generator power system with multiple generators.
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power system control functions and related programs
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混合动力汽车动力系统控制算法计算与优化中,使用动态规划算法优化汽车输出转矩MATLAB程序。(Simulation and Optimization of Power System Control Algorithm for Hybrid Electric Vehicle. Using Dynamic Programming Algorithm to Optimize Automobile Output Torque MATLAB Program.)
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利用博弈论对无线网络的功率控制问题进行分析,源码能迭代实现纳什均衡,迭代过程以图形展示。(The game theory is used to analyze the power control of wireless networks, and the source code can realize the Nash equilibrium iteratively, and the iterative process is shown graphically.)
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电力电子控制系统仿真模型,简单的基础模型,可以进行扩充(Power electronic control system simulation model, simple basic model, can be expanded)
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The basics are quite simple, but you also get complete control over practically every aspect of each graph, and with that power comes complexity.
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风机类型控制在MATLAB中基于simulink的实现(Implementation of fan type control in MATLAB based on Simulink.)
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可用于电力系统电压源换流器的小信号分析,参数设计,控制系统分析(It can be used for the design of small signal analysis parameters and control system analysis of power system voltage source converter.)
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2016_Design test of a hybrid energy storage system for primary frequency control using dynamic droop method in an isolated microgrid power system
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2011_Fuzzy-Logic-Control Approach of a Modified hill climbing method for maximum power point in microgrid standalone photovoltiac system(ELSEVEIR)
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下垂控制就是选择与传统发电机相似的频率一次下垂特性曲线(Droop Character)作为微源的控制方式,即分别通过P/f下垂控制和Q/V下垂控制来获取稳定的频率和电压,这种控制方法对微网中的微源输出的有功功率和无功功率分别进行控制,无需机组间的通信协调,实现了微源即插即用和对等控制的目标,保证了孤岛下微电网内电力平衡和频率的统一,具有简单可靠的特点(Droop control is to choose Droop Character, which is similar to the trad
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直驱风机 能实现mppt控制,采用不控整流管加boost控制,实现最大功率控制输出(PMSG MPPT
The direct-drive fan can realize MPPT control and realize maximum power control output by using uncontrolled rectifier tube plus boost control.)
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