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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Helicopter gas turbine engine performance analysis: A multivariable approach
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Helicopter gas turbine engine performance analysis: A multivariable approach

机译:直升机燃气涡轮发动机性能分析:多变量方法

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摘要

Helicopter performance relies heavily on the available output power of the engine(s) installed. A simplistic single-variable analysis approach is often used within the flight-testing community to reduce flight-test data in order to predict the available output power under various atmospheric conditions. This simplistic approach often results in unrealistic predictions. This paper proposes a novel method for analyzing flight-test data of a helicopter gas turbine engine. The so-called "Multivariable Polynomial Optimization under Constraints" method is capable of providing an improved estimation of the engine maximum available power. The Multivariable Polynomial Optimization under Constraints method relies on optimization of a multivariable polynomial model subjected to equalities and inequalities constraints. The Karush-Khun-Tucker optimization method is used with the engine operating limitations serving as inequalities constraints. The proposed Multivariable Polynomial Optimization under Constraints method is applied to a set of flight-test data of a Rolls Royce/Allison MTU250-C20 gas turbine, installed on an MBB BO-105 M helicopter. It is shown that the Multivariable Polynomial Optimization under Constraints method can predict the engine output power under a wider range of atmospheric conditions and that the standard deviation of the output power estimation error is reduced from 13 hp in the single-variable method to only 4.3 hp using the Multivariable Polynomial Optimization under Constraints method (over 300% improvement).
机译:直升机的性能在很大程度上取决于所安装发动机的可用输出功率。飞行测试界经常使用一种简化的单变量分析方法来减少飞行测试数据,以便预测各种大气条件下的可用输出功率。这种简单的方法通常会导致不切实际的预测。本文提出了一种分析直升机燃气涡轮发动机飞行测试数据的新方法。所谓的“约束条件下的多元多项式优化”方法能够提供对发动机最大可用功率的改进估计。约束下的多元多项式优化方法依赖于受等式和不等式约束的多元多项式模型的优化。 Karush-Khun-Tucker优化方法与发动机运行限制一起用作不等式约束。拟议的“约束条件下的多元多项式优化”方法应用于安装在MBB BO-105 M直升机上的劳斯莱斯/艾里森MTU250-C20燃气轮机的一组飞行测试数据。结果表明,约束条件下的多变量多项式优化可以在更大范围的大气条件下预测发动机输出功率,并且输出功率估计误差的标准偏差从单变量方法中的13 hp降低到仅4.3 hp使用约束方法下的多变量多项式优化(改进了300%以上)。

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