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- full bridge fuzzy prediction 全桥模糊预测
- Fuzzy prediction control (FPC) is a new control algorithm developed in recent years. It is the combination of fuzzy control and prediction control. 模糊预测控制 (FPC)是近年来发展起来的新型控制算法 ,是模糊控制与预测控制相结合的产物。
- A full bridge power driver is developed,which is an application specific integrated circuit(ASIC). 介绍了一种全桥式功率驱动器的电路设计。
- Chen Airong.Research on wind tunnel testing of Sutong bridge aeroelastic model of full bridge [R]. 陈艾荣.;苏通大桥全桥气弹模型风洞试验研究[R]
- Fuzzy predictive PID controller based on output-error. 基于输出误差预测的模糊预测PID控制及应用。
- Finally, a full bridge FFL driver with dimming is made, the driver let FFL has a uniform luminance source and dimming range reach range 100% to 10%. 最后本论文研制全桥平面萤光灯驱动调光电路,使平面萤光灯得均匀面光源,且调光范围可由100%25至10%25。
- The model is suitable for fuzzy prediction and control of complex system because the recognition method of fuzzy module parameters based on the theory of neural network is adopted. 该模型采用基于神经网路理论的模糊模型参数辨识方法,很适合于复杂系统的模糊预测和控制。
- SPWM output voltage is obtained through adopting phase-shifted full bridge,using integrate chip ML4818 and demodulating the secondary cycloconverter. 该方式采用移相全桥拓扑,利用集成控制芯片ML4818的功能,以及对次级循环换流器的解调制,得到输出SPWM电压波形。
- Based on studying status of ATO, fuzzy prediction control and automatic control algorithm, the application and simulation of fuzzy prediction control to ATO were further studied in the paper. 本文在总结了国内外的列车自动驾驶技术、模糊预测控制技术和列车自动控制算法的研究现状的基础上,对模糊预测控制在列车自动驾驶系统中的应用和仿真进行了深入研究。
- For IGBT module in full bridge inverter circuit, the drive circuit by discrete semiconductor devices and experiments' results are given. 最后给出了针对全桥逆变电路IGBT模块设计的分立元件驱动电路及实验结果。
- The application of fuzzy prediction control to ATO system not only enriches the theory of fuzzy prediction control, but also offers a new method for train operation with high quality. 将模糊预测控制应用于列车自动驾驶系统,既充实了模糊预测控制理论,又为实现列车运行过程的高品质控制提供了一种新方法。
- Using phase-shift ZVS full bridge and voltage closed loop control,DC/DC converter converts output voltage of AMTEC which fluctuates in a wide range to a steady voltage. DC/DC变换器采用移相ZVS(零电压开关)PWM全桥变换和电压闭环控制,把AMTEC在较宽范围变动的输出电压变成稳定的直流电压。
- Soft switching full bridge converter has been proposed to meet these goals by establishing zero voltage switching condition across the power transistors. 为了此一目的,全桥软切换转换器因应而生,此种技巧可利用开关元件的零电压切换,来有效的降低切换损失。
- In this thesis, a full bridge converter with limited soft switching capability and a coaxially-wound transformer are presented to improve the power density. 在本论文中将采用一低漏感之变压器,并架设于全桥半软切的电路上,来增加系统的功率密度。
- The full bridge inverter circuit is adopted both in the power of ozonizer and the module of fan.Two-way PWM of singlechip control the high voltage power and the output of fan. 臭氧发生器中产生臭氧的高压电源和风机都采用全桥逆变电路,单片机输出2路PWM信号对高压电源电压的幅值、风扇转速进行控制。
- However, besides those existing in common full bridge converters, there are new factgors because of the special control model and the required power factor correction functioned. 但由于电路特殊的控制方式和所要实现的功率因数校正功能,该校正电路中的功率变压器除存在普通全桥变换器产生偏磁的原因外,还存在产生偏磁的特殊因素。
- Fuzzy predictive control(FPC) is a new control algorithm developed in recent years.It is the combination of fuzzy control and predictive control. 模糊预测控制(FPC)是近年来发展起来的新型控制算法,是模糊控制和预测控制相结合的产物。
- Using the step response behavior of inertia process and the superposition theorem of linear system, this paper puts forward a fuzzy predictive model of dead-time processes. 利用惯性过程的阶跃响应特性和线性系统中的叠加原理,提出了纯滞后过程的模糊预估模型。
- This paper presents a new fuzzy predictive control method for the MOCVD device control system set to handle the non-linearity,time variability and large delay of plant controls. 为解决金属有机化合物化学气相淀积(MOCVD)设备温度控制的非线性、时变性以及大滞后等问题,给出了一种用模糊控制和预测控制相结合的复合控制方法。
- So that, based on the traditional PWM control mode, the turn-offof the two power components in the full bridge PWM converter aredelayed, consequently, zero-current-switching (ZCS) is realized. 因此,本文在传统PWM控制方式的基础上,使其中两只功率管的关断适当延时,从而使这两只功率管实现零电流开关(ZCS)。