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Plantwide control of chemical looping combustion

机译:全厂范围内的化学循环燃烧控制

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Passive systems theory is used to develop a general procedure to design the control structure of chemical process networks. A natural storage function, derived from the second law of thermodynamics, is the basis for passivity-based control design. The inventory control laws are implemented locally and individual units become passive. With all units in a chemical processing plant designed to be locally passive, the entire network will be passive and retain desirable properties such as L2 input-output stability and Lyapunov stability. The procedure presented allows for the decomposition of large flowsheets and the design of passivity-based control laws with little process information. The minimum number of controlled inventories to assure passivity of the entire network is identified. Additional degrees of freedom are available for constraint handling, flow control and determining the process load. The chemical looping combustion process is used as an illustrative example for the procedure.
机译:无源系统理论用于制定通用程序来设计化学过程网络的控制结构。源自热力学第二定律的自然存储函数是基于被动性的控制设计的基础。库存控制法律是在本地实施的,单个单位变得被动。由于化学加工厂中的所有单元都设计为本地无源,因此整个网络将是无源的,并保留理想的属性,例如L2输入输出稳定性和Lyapunov稳定性。所介绍的过程允许分解大流程,并设计基于无源性的控制律而几乎没有过程信息。确定了确保整个网络无源的受控库存的最小数量。其他自由度可用于约束处理,流量控制和确定过程负荷。化学循环燃烧过程用作该过程的说明性实例。

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