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MULTIVARIABLE CONTROL OF AN INDUSTRIAL GAS PHASE COPOLYMERIZATION REACTOR

机译:工业气相共聚反应器的多变量控制

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Advanced control is used to avoid large temperature offsets for a batch copolymerization gas phase reactor used for test of catalysts. A nonlinear state-space model is developed to represent the reactor behavior in terms of mass and energy balances. A growth model describes the gas phase copolymerization and includes an activation-deactivation model for the catalyst. The multivariable control system includes three manipulated inputs, three controlled outputs and two measurements, temperature and pressure. The strategy combines nonlinear geometric control laws where states are either estimated by extended Kalman filtering or predicted from the kinetic model. This advanced control has been implemented with success on an industrial reactor.
机译:用于避免用于试验催化剂的批量共聚气相反应器的批量共聚气相反应器的大型温度偏移。开发非线性状态空间模型以在质量和能量余额方面代表反应器行为。生长模型描述了气相共聚合,包括催化剂的活化 - 失活模型。多变量控制系统包括三个操纵输入,三个受控输出和两个测量,温度和压力。该策略结合了非线性几何控制法,其中各种由扩展卡尔曼滤波或从动力学模型预测的估计。这种先进的控制已经在工业反应堆上取得了成功。

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