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Comprehensive Optimization Strategy of Secondary Sound Source in Active Noise Control System of Power Transformer Based on Monte Carlo Method

机译:基于蒙特卡罗方法的电力变压器有源噪声控制系统二次声源综合优化策略

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The active noise control (ANC) technology has been the main application method at present, and the optimal selection of the number, location, amplitude and phase of secondary sources is a core issue. This study mainly starts from the optimization of the secondary sound source layout to improve the noise reduction performance of ANC system. In this study, an electric-magnetic-structure-acoustic multi-physics field coupling model of transformer was established, and its sound field distribution characteristics were analyzed. Then this study simulated and verified the noise reduction effect of the simplified sound source model and transformer model. The sum of the squares of all the monitoring points’ sound pressure was selected by mathematical derivation as the objective function of the optimization. In this study, the multi-coupled secondary sound source parameters were optimized by using the established transformer sound field radiation model in combination with the field environment. Considering the interaction between the secondary sound source location and the sound source strength, we decided to use the Monte Carlo method to optimize the location and strength variables of the secondary sound source to eliminate the effects of their interactions as much as possible. The location and strength parameters under different numbers of secondary sound sources were obtained respectively. This study combined simulation software to verify the feasibility of the research method. The final simulation results show that the method has the better active noise reduction effect.
机译:主动噪声控制(ANC)技术已成为当前的主要应用方法,对次要源的数量,位置,幅度和相位的最佳选择是一个核心问题。本研究主要从优化二次声源布局入手,以提高ANC系统的降噪性能。本研究建立了变压器的电磁结构声多物理场耦合模型,并对其声场分布特性进行了分析。然后,本研究模拟并验证了简化声源模型和变压器模型的降噪效果。通过数学推导选择所有监测点声压的平方和作为优化的目标函数。在这项研究中,通过使用已建立的变压器声场辐射模型并结合现场环境来优化多耦合次级声源参数。考虑到次要声源位置和声源强度之间的相互作用,我们决定使用蒙特卡洛方法来优化次要声源的位置和强度变量,以尽可能消除它们的相互作用的影响。分别获得了不同数量的次级声源的位置和强度参数。本研究结合仿真软件验证了该方法的可行性。最终的仿真结果表明,该方法具有较好的主动降噪效果。

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