• 钢管自动成形电液比例系统进行模糊比例-积分-微分控制研究。

    Fuzzy proportional-integral-differential control of steel pipe bundle auto-shaping electro-hydraulic proportional system was studied.

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  • 该文提出种适用一阶或二阶加延迟系统的自校比例-积分-微分控制器设计方法

    A new design approach for self-tuning PID controller with parameter optimization is proposed in this paper.

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  • PID控制器性能好坏关键在于比例积分微分参数的选择

    The performance of PID controller lies in the choice of proportional, integral and different coefficient.

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  • 为了实现一类非线性系统混沌控制提出非线性不确定系统鲁棒混沌反控制的非线性比例积分微分控制(NPID)方法

    In order to realize chaos robust anti-control of a class of nonlinear system with uncertainties, a nonlinear proportional integral differential (NPID) control method was put forward.

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  • 模糊控制作用不同于传统比例积分微分控制。

    Fuzzy control ACTS differently from conventional PID control.

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  • 目前大多数反馈控制系统控制器采用比例积分微分控制算法(PID)。

    Most current feedback systems seem to have been designed around the proportion. Integral and derivative type of control algorithm (PID).

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  • 为了有效地抑制网络延时网络控制系统性能影响,提出鲁棒数字比例积分微分(PID)控制器设计方法

    In order to restrict the influence of network-induced delays on the performance of networked control systems, a novel robust proportional-integral-differential (PID) control technique was proposed.

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  • 通过比例积分微分三部分综合控制,以精确调试环境试验设备

    It could adjust the environment equipment accurately trough the generate control of proportional integral differential.

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  • 船舶主机调速器主要采用比例积分微分(PID)控制规律

    Most of speed controllers of main engine in ship use PID control method.

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  • 系统PID参数调整按先比例、后积分、再微分顺序采用凑试法由小到大整定。

    The PID parameter was adjusted in the order of proportion, integral and differential, and was decided by trying from small to large.

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  • 阐述了温室控制常用方法分步控制、整体控制、反馈控制、比例控制、积分控制、微分控制、前馈控制的特点。

    The common control methods, such as step control, integrate control, feed back, proportional, integral, derivative and feed forward, were described.

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  • 自动船舶必需设备目前广泛使用的有比例微分舵,比例积分微分自适应舵。

    The automatic rudder is an indispensable equipment of the ship. The proportional-differential rudder, proportional-differential-integrating rudder and adaptive rudder are widely used now.

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  • 分析分数积分基础,提出了一种新型模糊分数阶比例积分微分控制器

    A novel fuzzy fractional order proportional integral derivative (FFPID) controller based on fractional calculus is presented.

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  • 现有比例积分微分(PID)优化设计算法难以兼顾系统快速性稳定性鲁棒性要求

    The current Proportion Integration Differentiation (PID) optimization Design methods are often difficult to consider the system requirements for quickness, reliability and robustness.

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  • 方法依赖于系统的精确模型,将待控制量的误差及其变化率作为输入,根据控制要求建立模糊规则,实时输出比例积分微分系数的修正量,从而改善控制效果

    This method does not depend on the precise model, and establish the fuzzy rules under certain control requires. It can improve the Control results by adjusting the parameters in time.

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  • 隐含比例元、积分元、微分组成实现PID运算

    The hidden layer that is made up of proportion, integral and differential three parts realizes PID operation;

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  • 2>PID控制通过调控反映输出电流比例相关参数比例段,积分时间微分时间;

    PID control: through the adjustment of the proportion of the output current, the relevant parameters are proportional, integral time and differential time;

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  • 控制EPS-TT系统设计了线圈载体控制法比例积分微分控制算法

    A map-based control method and a proportional-integral-derivative control algorithm are designed to control the EPS-TT system.

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  • 控制EPS-TT系统设计了线圈载体控制法比例积分微分控制算法

    A map-based control method and a proportional-integral-derivative control algorithm are designed to control the EPS-TT system.

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