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ACTIVE NOISE CONTROL IN A SEMI-CLOSED AIRCRAFT CABIN

机译:半封闭飞机机舱内的主动噪声控制

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An active noise control system is developed for the loadmaster area of a propeller driven transport aircraft. The loadmaster area is a small semi-enclosed volume connected to the large cargo hold. This coupling of a small room with a large room yields to new questions when an active noise control system is designed: Which effects does the coupling have on the noise field inside the small loadmaster area? Which influence do these effects have on the active noise control system? How complex is the uncertainty induced by the coupling to the large cargo? The analysis of this coupling was done in two ways. The first one, an energy based method, is used to analyze the acoustical energy flow between the loadmaster area and the cargo hold. The second one, a substructure technique, is used to study the influence on the eigenfrequencies and eigenmodes of such a coupled system. Afterwards, the theoretic results were confirmed with an experimental forced vibration analysis. The most important result is that the shape of the noise field inside the loadmaster area is less sensitive in spite of the large cargo hold. Moreover, an active noise controller was developed to handle the controller tasks. First experimental control results are given in the last section. These results have shown successful noise reduction up to 23 dB without any controller optimization.
机译:为螺旋桨驱动的运输飞机的负荷主区域开发了一种主动噪声控制系统。装卸区是连接到大型货舱的小型半封闭空间。当设计有源噪声控制系统时,小房间与大房间的这种耦合产生了新的问题:这种耦合对小负载主控区域内的噪声场有哪些影响?这些影响对有源噪声控制系统有哪些影响?与大货物耦合引起的不确定性有多复杂?这种耦合的分析有两种方法。第一种方法是基于能量的方法,用于分析负载控制区域和货舱之间的声能流。第二种是子结构技术,用于研究对这种耦合系统的本征频率和本征模的影响。之后,通过实验的强制振动分析确认了理论结果。最重要的结果是,尽管货舱很大,但装货主区域内的噪声场的形状不太敏感。此外,开发了有源噪声控制器来处理控制器任务。最后一部分给出了第一个实验控制结果。这些结果表明,在不进行任何控制器优化的情况下,成功降低了23 dB的噪声。

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