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首页> 外文期刊>E3S Web of Conferences >Optimation of Depropanizer Unit using Turbo Expander and Its Controller using Model Predictive Control
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Optimation of Depropanizer Unit using Turbo Expander and Its Controller using Model Predictive Control

机译:基于涡轮膨胀机的脱丙烷装置及其模型预测控制的优化

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摘要

In this study, Turbo expander (TE) and Model Predictive Control (MPC) is suggested for depropanizer unit to increase propane recovery and improve control performance of the unit. The model that used in the MPC is a first order plus dead time (FOPDT), which tested the control performance using set point (SP) and disturbance change test. The measurement of the performance is the integral of the absolute error (IAE). As a result, use of TE in the depropanizer able to increase the recovery of propane of 8.44% (from 82.11% to 90.55%). The control structure of the depropanizer unit using turbo expander are pressure control for the TE (using proportional-integral control), composition control in the distillate flow (using MPC), and pressure control in depropanizer column (using MPC). The control performance after carrying out the tests show that at the SP change, the composition control and the pressure control in depropanizer unit has lower IAE values for MPC than PI contoller. Similarly when tested using disturbance rejection, the IAE of MPC is lower than PI controller. It means that MPC is better than PI controller for composition control and pressure control in depropanizer unit.
机译:在这项研究中,建议将Turbo膨胀机(TE)和模型预测控制(MPC)用于脱丙烷装置,以提高丙烷回收率并改善装置的控制性能。 MPC中使用的模型是一阶加死区时间(FOPDT),它使用设定点(SP)和干扰变化测试来测试控制性能。性能的度量是绝对误差(IAE)的积分。结果,在脱丙烷器中使用TE能够将丙烷的回收率提高8.44%(从82.11%提高至90.55%)。使用涡轮膨胀机的脱丙烷装置的控制结构包括:TE的压力控制(使用比例积分控制),馏出物流中的成分控制(使用MPC)和脱丙烷塔的压力控制(使用MPC)。进行测试后的控制性能表明,在SP更改时,脱丙烷装置中的成分控制和压力控制的MPC的IAE值低于PI控制器。同样,当使用干扰抑制测试时,MPC的IAE低于PI控制器。这意味着MPC在脱丙烷装置中的成分控制和压力控制方面优于PI控制器。

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