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Mixed analog-digital crossbar-based hardware implementation of sign-sign LMS adaptive filter

机译:基于混合模数交叉开关的符号LMS自适应滤波器的硬件实现

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Recently announcement of a physical realization of a fundamental circuit element called memristor by researchers at Hewlett Packard (HP) has attracted so much interest worldwide. Combination of this newly found element with crossbar interconnect technology, opened a new field in designing configurable or programmable electronic systems which can have applications in signal processing and artificial intelligence. In this paper, based on the simple memristor crossbar structure, we will propose a new mixed analog-digital circuit as a hardware implementation of the sign-sign least mean square (LMS) adaptive filter algorithm. In this proposed hardware, any multiplication and addition is performed with infinite precision and there is no necessity for the quantization of the input signal. Since the coefficients of the filter are stored in the switches of the crossbar, they can remain unchanged theoretically for an infinite period of time.
机译:惠普公司(HP)的研究人员最近宣布了一种称为忆阻器的基本电路元件的物理实现,引起了全世界的广泛关注。这种新发现的元件与交叉开关互连技术的结合,为设计可在信号处理和人工智能中应用的可配置或可编程电子系统开辟了一个新领域。在本文中,基于简单的忆阻器交叉开关结构,我们将提出一种新的混合模数电路,作为符号最小均方(LMS)自适应滤波器算法的硬件实现。在该提出的硬件中,任何乘法和加法都以无限的精度执行,并且不需要对输入信号进行量化。由于滤波器的系数存储在纵横开关中,因此它们在理论上可以无限期保持不变。

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