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首页> 外文期刊>IEEE Transactions on Control Systems Technology >Likelihood-Based Control of Engine Knock
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Likelihood-Based Control of Engine Knock

机译:基于可能性的发动机爆震控制

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摘要

Engine knock is an undesirable phenomenon, which requires feedback control in order to maximize engine efficiency and avoid damage to the engine. In this paper, an analysis of experimental data is used to provide further evidence that knock behaves as a cyclically uncorrelated random process. It is argued that all knock controllers are therefore ultimately stochastic in nature and that the knock control problem is best undertaken within a stochastic framework. The properties of knock events are discussed and, based on these properties, a new likelihood-based stochastic knock controller is presented. The new controller achieves a significantly improved regulatory response relative to conventional strategies, while also maintaining a rapid transient response. It is therefore possible to operate closer to the knock limit without increasing the risk of engine damage.
机译:发动机爆震是不希望有的现象,需要反馈控制以最大化发动机效率并避免损坏发动机。在本文中,对实验数据的分析被用来提供进一步的证据,证明爆震表现为周期性不相关的随机过程。因此,所有的爆震控制器在本质上最终都是随机的,并且爆震控制问题最好在随机框架内解决。讨论了爆震事件的特性,并基于这些特性,提出了一种新的基于似然性的随机爆震控制器。相对于传统策略,新控制器可显着改善监管响应,同时还能保持快速瞬态响应。因此可以在不增加爆震极限的情况下工作,而不会增加发动机损坏的风险。

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