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用于分析声表面波和漏波器件的近似格林函数表示。

Approximate Green's function representations for the analysis of SAW and leaky wave devices.

机构信息

COM DEV, Cambridge, ON, Canada.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2009 Oct;56(10):2268-81. doi: 10.1109/TUFFC.2009.1308.

Abstract

The Green's function or boundary element method (BEM) is the preferred technique for rigorous SAW device analysis. However, because of its computational cost, its principal application is the analysis of mode propagation in periodic structures to determine parameters that can then be used in simplified coupling of modes (COM) or P-matrix models. In this paper, rigorous representations are derived that express the Green's function in terms of a continuous superposition of modes. The derivations include detailed analysis of the Green's function properties as a function of both frequency and wavenumber, and representations are obtained for both the slowness and spatial domains. Approximate forms are then generated by replacing the continuous mode superposition by a discrete one. The Green's function can be approximated to any required degree of accuracy, and the resulting approximations are applicable to any type of wave on any type of substrate. The long-range spatial components in the approximate forms are represented by exponential terms. The separable properties of these terms allow this class of approximation to be applied to general SAW and leaky wave device analysis in such a way that the computational effort increases only linearly with device size.

摘要

格林函数或边界元法(BEM)是严格分析声表面波器件的首选技术。然而,由于其计算成本,其主要应用是分析周期性结构中的模式传播,以确定可用于简化耦合模式(COM)或 P 矩阵模型的参数。本文推导出了一种严格的表示方法,即用连续的模式叠加来表示格林函数。推导过程包括对格林函数作为频率和波数函数的特性进行详细分析,并得到了慢度域和空间域的表示。然后通过用离散模式叠加来代替连续模式叠加来生成近似形式。格林函数可以以任何需要的精度进行近似,并且得到的近似适用于任何类型的衬底上的任何类型的波。近似形式中的远程空间分量由指数项表示。这些项的可分离特性允许将此类近似应用于一般声表面波和泄漏波器件分析,从而使计算工作量仅随器件尺寸线性增加。

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