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Solution of Some Problems oOf Single-Scale Wavelet Transform Processor Using a Magnetostatic Surface Wave Device

机译:用静磁表面波装置解决单尺度小波变换处理器的一些问题

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In this paper, we investigate the implementation schemes of a single-scale wavelet transform processor using magnetostatic surface wave (MSSW) devices. There are three implementation schemes: the interdigital transducer, the meander line transducer and the grating transducer. Because the interdigital transducer has excellent properties, namely, good frequency characteristic and low insertion loss, we use the interdigital transducer as the implementation scheme of a single-scale wavelet transform processor using MSSW device.In the paper, we also present the solutions to the three key problems: the direct coupling between the input transducer and the output transducer, the insertion loss, and the loss characteristics of the gyromagnetic film having an influence on the wavelet transform processor. There are two methods of reducing the direct coupling between the input transducer and the output transducer: increasing the distance between the input transducer and the output transducer, and placing a metal a€?walla€? between the input transducer and the output transducer. There also are two methods of reducing the insertion loss of a single-scale wavelet transform processor using a MSSW device for scale: the appropriate thickness of the yttrium iron garnet (YIG) film and the uniform magnetic field.The smaller the ferromagnetic resonance linewidth of the gyromagnetic film , the smaller the magnetostatic wave propagation loss.
机译:在本文中,我们研究了使用静磁表面波(MSSW)设备的单尺度小波变换处理器的实现方案。共有三种实现方案:叉指式换能器,曲折线换能器和光栅换能器。由于叉指换能器具有优良的特性,即良好的频率特性和较低的插入损耗,因此我们将叉指换能器作为使用MSSW器件的单尺度小波变换处理器的实现方案。本文还提出了解决方案。三个关键问题:输入换能器与输出换能器之间的直接耦合,插入损耗以及对小波变换处理器有影响的旋磁膜的损耗特性。减少输入换能器和输出换能器之间直接耦合的方法有两种:增加输入换能器和输出换能器之间的距离,以及放置金属墙。在输入换能器和输出换能器之间。还有两种方法可以减少使用MSSW器件进行缩放的单尺度小波变换处理器的插入损耗:钇铁石榴石(YIG)膜的适当厚度和均匀磁场。旋磁膜的静磁波传播损耗越小。

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