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Analytical Triangular Decoupling Internal Model Control of a Class of Two-Input, Two-Output (TITO) Systems with Delays

机译:分析三角解耦内部模型控制,延迟的一类两输入,双输出(铁托)系统

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The Decoupling Internal Model Control (DIMC) technique is modified to achieve triangular decoupling for a class of two-input, two-output systems with delays. The closed-loop transfer function matrix that guarantees stability and triangular decoupling within the IMC framework is mathematically developed, and the corresponding centralized decoupling internal model controller calculated for systems with delays and right-half-plane zeros. The shifting of inverse responses and interactions is achieved to a single least-desired output so that for non-minimum-phase (NMP) two-input, two-output (TITO) systems with delays, one output has some delay but has no interacting behaviour or inverse response behaviour, while the less-desired output has substantial interaction and inverse response behaviour, with asymptotic tracking of setpoints for both outputs. A simulation example shows the effectiveness of the proposed method.
机译:解耦内部模型控制(DIMC)技术被修改为实现具有延迟延迟的一类两输入的两输入的三角耦合。保证IMC框架内保证稳定性和三角耦合的闭环传输函数矩阵在数学上开发,以及用于具有延迟和右半平面零的系统计算的相应集中解耦内部模型控制器。对单个最小期望的输出实现了逆响应和相互作用的换档,使得对于非最小相位(NMP)两输入,具有延迟的两个输出(TITO)系统,一个输出具有一些延迟但没有交互行为或逆响应行为,而较为期望的输出具有实质性交互和反应响应行为,具有对两个输出的设定值的渐近跟踪。模拟示例显示了所提出的方法的有效性。

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