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An Adaptive Delay-Compensated PID Air-Fuel Ratio Controller

机译:自适应延迟补偿的PID空燃比控制器

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In this work, a discrete, time-based, delay-compensated, adaptive PID control algorithm for air-fuel ratio control in an SI engine is presented. The controller operates using feedback from a wide-ranging Universal Exhaust Gas Oxygen (UEGO) sensor situated in the exhaust manifold. Time delay compensation is used to address the difficulties traditionally associated with the relatively long and time-varying time delay in the gas transport process and UEGO sensor response. The delay compensation is performed by computing a correction to the current control move based on the current delay and the corresponding values of the past control moves. The current delay is determined from the measured engine speed and load using a two-dimensional map. In order to achieve good servo operation during target changes without compromising regulator performance a two-degree-of-freedom controller design has been developed by adding a pre-filter to the air-fuel ratio target. The algorithm has been implemented on a 2L Ford I4 engine and the results are used to assess the performance of the new controller.
机译:在这项工作中,提出了一种离散,时间的,延迟补偿的Si引擎中的空燃比控制的自适应PID控制算法。控制器使用位于排气歧管中的宽范围通用废气氧(UEGO)传感器的反馈进行操作。时间延迟补偿用于解决传统上与燃气运输过程和UEGO传感器响应相对长而时变的时间延迟相关的困难。通过基于当前延迟计算到电流控制移动的校正和过去控制移动的相应值来执行延迟补偿。使用二维图,从测量的发动机速度和负载确定电流延迟。为了在无损害调节器性能的情况下实现良好的伺服操作而不损害调节器性能,通过将预滤波器增加到空燃比目标来开发两度自由度控制器设计。该算法已经在2L FORD I4引擎上实现,结果用于评估新控制器的性能。

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