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Design of Digit-Serial FIR Filters: Algorithms, Architectures, and a CAD Tool

机译:数字串行FIR滤波器的设计:算法,体系结构和CAD工具

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In the last two decades, many efficient algorithms and architectures have been introduced for the design of low-complexity bit-parallel multiple constant multiplications (MCM) operation which dominates the complexity of many digital signal processing systems. On the other hand, little attention has been given to the digit-serial MCM design that offers alternative low-complexity MCM operations albeit at the cost of an increased delay. In this paper, we address the problem of optimizing the gate-level area in digit-serial MCM designs and introduce high-level synthesis algorithms, design architectures, and a computer-aided design tool. Experimental results show the efficiency of the proposed optimization algorithms and of the digit-serial MCM architectures in the design of digit-serial MCM operations and finite impulse response filters.
机译:在过去的二十年中,为设计低复杂度的位并行多常数乘法(MCM)操作引入了许多有效的算法和体系结构,这些运算和体系结构主导了许多数字信号处理系统的复杂性。另一方面,尽管数字串行MCM设计提供了替代的低复杂度MCM操作,但却很少引起注意,尽管这是以增加延迟为代价的。在本文中,我们解决了数字串行MCM设计中优化门级区域的问题,并介绍了高级综合算法,设计架构和计算机辅助设计工具。实验结果表明,在数字串行MCM操作和有限冲激响应滤波器的设计中,所提出的优化算法和数字串行MCM体系结构是有效的。

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