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Finite Element Modelling of SAW Correlator

机译:声表面波相关器的有限元建模

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Numerical simulations of SAW correlators so far are limited to delta function and equivalent circuit models. These models are not accurate as they do not replicate the actual behaviour of the device. Manufacturing a correlator to specifically realise a different configuration is both expensive and time consuming. With the continuous improvement in computing capacity, switching to finite element modelling would be more appropriate. In this paper a novel way of modelling a SAW correlator using finite element analysis is presented. This modelling approach allows the consideration of different code implementation and device structures. This is demonstrated through simulation results for a 5 × 2-bit Barker sequence encoded SAW correlator. These results show the effect of both bulk and leaky modes on the device performance at various operating frequencies. Moreover, the ways in which the gain of the correlator can be optimised though variation of design parameters will also be outlined.
机译:迄今为止,SAW相关器的数值模拟仅限于增量函数和等效电路模型。这些模型不准确,因为它们无法复制设备的实际行为。制造相关器以具体实现不同的配置既昂贵又耗时。随着计算能力的不断提高,切换到有限元建模将更为合适。在本文中,提出了一种使用有限元分析建模SAW相关器的新方法。这种建模方法允许考虑不同的代码实现和设备结构。通过5×2位Barker序列编码的SAW相关器的仿真结果证明了这一点。这些结果表明,在各种工作频率下,体模式和漏模式对器件性能的影响。此外,还将概述通过设计参数的变化可以优化相关器增益的方法。

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