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Analysis of transient response first order and second order theory in pneumatic control system using feedback instrument type PCM140

机译:通过反馈仪器型PCM140分析气动控制系统中的瞬态响应第一阶和二阶理论

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In marine scope especially on ships, pneumatic control systems are applied in ramp door ships, navigation door, and also valve mechanism that used air flow as moveable fluid. A testing method for feedback instrument type PCM140 are using standard testing signal to analyze system response, there are step, ramp, and sinusoidal. While in caused of dashpot in second order system, the characteristic of second order system shows with damping ratio and overshoot. This research using an experimental method with experiment and analyze the data. As a result of analysis, obtained that time constant of the system 0.151 seconds (first order) and 0.359 seconds (second order), with a delay time 1.056 seconds (first order) and 0.013 seconds (second order). In the second order system has damping ratio 0,3 with the overshoot 0.37%. The sinusoidal frequency is 88.13 with the amplitude ratio 1.208 and phase lag is 85.71° for first order, and sinusoidal frequency is 0.762 with the amplitude ratio 1.66 and phase lag is 76.59° for second order. This results verified that, with the damping in the system, the system response become smooth (less vibration because of sine wave produced is interruptedly). With the results from analysis can be concluded that feedback instrument type PCM140 condition is still in good condition.
机译:在海洋范围内,特别是在船上,气动控制系统应用于坡道,导航门,以及使用空气流作为可移动流体的阀机构。反馈仪器类型PCM140的测试方法使用标准测试信号来分析系统响应,有步骤,斜坡和正弦。虽然在二阶系统中的DASHPOT导致时,二阶系统的特性显示阻尼比和过冲。本研究使用实验方法进行实验并分析数据。由于分析结果,获得了系统的时间常数0.151秒(第一顺序)和0.359秒(二阶),延迟时间为1.056秒(第一阶)和0.013秒(二阶)。在二阶系统中具有衰减比率0.3,过冲0.37 %。正弦频率为88.13,幅度比1.208和第一阶的相位滞后为85.71°,正弦频率为0.762,幅度比为1.66,相滞76.59°为二阶。结果证实,随着系统中的阻尼,系统响应变得平滑(由于所产生的正弦波而较少的振动)。通过分析结果可以得出结论,反馈仪器型PCM140条件仍处于良好状态。

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