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New Time-Domain Approach for Digital Signal Processing: A Set of Experimental Measures for Systems with High Transmission Rates

机译:数字信号处理的新时域方法:高传输率系统的一组实验方法

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The essential purpose of this paper is to introduce to the current literature a new theoretical approach on how to implement the process of encoding data using a unique treatment with respect to the digital signal processing. Some relationships between a set of digital pulses and a special class of real polynomials allow us to identify the generation of a single pulse with an intrinsic dependence on the zero values of an arbitrary equation represented by a polynomial equation, where this direct match is established through an analytic operator. By using an ordinary field-programmable gate array architecture, it is possible to validate our theoretical approach, and we are presenting some experimental measurements, as well as one application on how to build a commercial data compressor for fiber optics. The algorithm here introduced presents an innovative technique, and its performance is faster per comparison. Furthermore, thanks to the math-to-time-domain transformations, it tends to overcome the current time required to process polynomial equations, which are involved in the data compression and data encryption systems.
机译:本文的主要目的是向当前文献介绍一种新的理论方法,该方法关于如何使用针对数字信号处理的独特处理来实现数据编码过程。一组数字脉冲与一类特殊的实多项式之间的某些关系使我们能够识别一个单脉冲的生成,该脉冲与多项式方程表示的任意方程的零值有内在的依赖关系,其中直接匹配通过以下方式建立分析运算符。通过使用普通的现场可编程门阵列架构,可以验证我们的理论方法,并且我们将提供一些实验测量结果,以及关于如何构建用于光纤的商用数据压缩器的一种应用。这里介绍的算法提出了一种创新技术,并且每次比较其性能都更快。此外,由于数学到时域的转换,它倾向于克服处理多项式方程所需的当前时间,该多项式方程涉及数据压缩和数据加密系统。

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