An Optimized Integrator Windup Protection Technique Applied to a Turbofan Engine Control


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This paper introduces a new technique for providing memoryless integrator windup protection which utilizes readily available optimization software tools. This integrator windup protection synthesis provides a concise methodology for creating integrator windup protection for each actuation system loop independently while assuring both controller and closed loop system stability. The individual actuation system loops' integrator windup protection can then be combined to provide integrator windup protection for the entire system. This technique is applied to an H(exp infinity) based multivariable control designed for a linear model of an advanced afterburning turbofan engine. The resulting transient characteristics are examined for the integrated system while encountering single and multiple actuation limits. Watts, Stephen R. and Garg, Sanjay Glenn Research Center NASA-TM-107035, NAS 1.15:107035, E-9855, NIPS-95-06274 NAS3-26618; RTOP 505-62-50...













The Finding Guide to AIAA Meeting Papers


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Aerospace America


Book Description