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Stochastic Simulation of a CumSum Knock Controller

机译:CumSum爆震控制器的随机模拟

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Single time-history simulations of knock control strategies cannot provide repeatable measures of closed loop performance because such responses are strongly dependent on the random arrival of knock events during the specific simulation or experiment. Stochastic simulation algorithms address this issue by computing the probability distribution of the closed loop response as a function of time from any given initial distribution. In this paper, a new algorithm is presented for stochastic simulation of a Cumulative Summation-based knock control strategy. The stochastic simulator is then used to assess the performance of this strategy in a scenario in which feedback sensitivity is also enhanced through the use of an optimized knock threshold. The results are compared to those for a traditional knock controller operating using a more conventional knock threshold level.
机译:爆震控制策略的单个时间历史模拟无法提供闭环性能的可重复度量,因为此类响应在很大程度上取决于特定模拟或实验期间爆震事件的随机到达。随机仿真算法通过从任何给定初始分布计算闭环响应的概率分布作为时间的函数来解决此问题。在本文中,提出了一种新算法,用于基于累积求和的爆震控制策略的随机模拟。然后,在还通过使用优化的爆震阈值来提高反馈灵敏度的情况下,使用随机模拟器评估此策略的性能。将结果与使用更常规爆震阈值水平的传统爆震控制器的结果进行比较。

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