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boost相关的网络例句

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In order to eliminate the influence caused by the nonminimum phase characteristic of a common Boost DC/DC converter, Viswanathan K has proposed a novel tristate Boost DC/DC converter. For enhancing performance, the statespace averaging model of this converter was first presented in this paper. Due to the nonlinear nature in this model, an inputoutput feedback linearization technique was adopted, and a complete controllable linear system was obtained. Then a statefeedback control strategy was designed based on this linear system. Simulation results show that the proposed control strategy can assure constant output voltage in a wide range, so as to realize the stability of the system during large fluctuation of power supply and load disturbance. Good dynamic performance can also be achieved.

针对 Viswanathan K为消除普通BOOST DC/DC变换器的非最小相位特性而提出的三态Boost DC/DC变换器,为进一步提高这种电路拓扑的性能,在建立了变换器状态空间平均模型的基础上,针对其多变量、非线性特点,采用输入输出线性化将其转化为一个完全可控的线性系统,在此基础上应用现有成熟的线性控制策略进行了控制系统的设计,并且采用MATLAB进行仿真验证,结果表明:这种非线性控制策略可以确保输出电压在大范围内恒定可调,且即使存在大范围扰动(输入电压和负载变化均较大)的情况下,系统也可以确保稳定性和良好的动态性能。

In order to assist Boost converter design, the working process of the converter at discontinuous current mode was analyzed and a nonlinear mathematical model was estabilished as well. Case study on Matlab/ Simulink was performed with binary logical variable used, the simulation result was consistent with the theoretical analysis which proveed the validitd and feasibility of the proposed model. The model could be used to assist Boost circuit design effectively and supplie a basis for parameter optimization.

为了辅助升压变换器在应用中的设计,分析了电流断续状态下Boost变换器的工作过程,建立了这种状态下的Boost变换器非线性数学模型,在结合二进制逻辑变量,建立了Simulink模块下的变换器仿真模型,研究表明仿真结果与理论分析结果一致,证实了模型的准确性和可行性,这种逻辑与模拟结合的简明通用的模型可以高效辅助Boost电路设计并为参数优选打下了基础。

The unified discrete iterative map model of peak current and valley current controlled buck, boost, and buck-boost converters is established, and the unified piecewise smooth iterative map and their corresponding characteristics equations are also derived.

本文建立了峰值电流和谷值电流控制Buck,Boost,及Buck-Boost变换器的统一离散迭代映射模型,并导出了统一的分段光滑迭代映射方程及特征值方程,通过数值仿真得到了占空比变化时的正、逆分岔图和Lyapunov指数谱。

It is difficult Boost converter has good dynamic adjustment performance and stability if the system using a single voltage feedback loop get some interference. The reason is Boost converter has a zero point in right half plane.

Boost变换器的开环传递函数有一个位于右半平面的零点,使得使用单一的反馈电压环难以同时保证系统在受到某种扰动作用时,既有很好的动态品质又不致造成系统失稳。

The sponge hardness of Boost TX rubber is between Boost TC and Boost TP.

BOOST TX的海绵硬度在BOOST TC和BOOST TP之间。

Comparing with traditional Boost PFC circuit,bridgeless Boost PFC circuit can improve efficiency and has advantage in medium and high power applications.

与传统Boost PFC电路相比,无桥Boost PFC电路能提高整机效率,特别适用于中大功率电路中。

You'd have boost::bimap, boost::mru, etc, and no common intro to them.

你就有了 boost::bimap, boost::mru,等等,它们没有共同的说明。

For now, a link to boost::bimap and other one to boost::mru will suffice.

现在,有一个到 boost::bimap 的链接和另一个到 boost::mru 的链接就足够了。

And a series of new control type soft switching topologies, such as Buck, Boost, Buck-boost, Cuk, Zeta, Sepic, Flyback, and Forward are constructed by using the theory of five characteristics.

接着应用 5 个特征理论推导和构造出Buck、Boost、Buck-boost、Cuk、Zeta、Sepic、Flyback、Forward等一系列拓扑的控制型软开关的实现方法。

The control signals of the PWM rectifier are obtained by comparing the current of AC side with triangular wave (or saw-tooth wave) directly, which can implement the steadiness of the voltage of DC side and unit capacity factor of the system. At the same time, harmonic component of the system is abstracted through Instant Reactive Power Method, which can be smoothed by Integrated Learning Boost Converter Control.

本文采用重复学习Boost变换技术,利用滑模变结构控制技术对单相PWM整流器恒频Boost变换进行了分析,提出将交流侧电流直接与三角波相比较得到开关控制信号的方法,实现直流电压恒定不变及系统单位功率因数;同时,利用瞬时无功功率法分析系统谐波,并在谐波域内使用重复学习的控制方法,结合Boost变换技术,有效滤除系统谐波有功电流。

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