An improved algorithm for the estimation of the root mean square value as an optimal solution for commercial measurement equipment

IF 1.9 4区 计算机科学 Q3 COMPUTER SCIENCE, HARDWARE & ARCHITECTURE
Marina Bulat, Stefan Mirković, Nemanja Gazivoda, Dragan Pejić, Marjan Urekar, Boris Antić
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引用次数: 0

Abstract

This paper demonstrates that direct changes in the algorithm for the estimation of the root mean square value of a voltage signal of an arbitrary waveform can lead to improved performances and lower measurement uncertainty of commercially available instruments without requiring any upgrade of their existing hardware. The research conducted and presented here is an original contribution to the development of estimation techniques and mathematical models for measurement oriented purposes regardless of the number of samples in the given period relying on mathematical calculation of the equal complexity as in the methods already in use. The theoretical approach examines the problem of numerical integration focusing on modified Simpson's 1/3 rule and modified Simpson's 3/8 rule used for the purpose of the estimation of the root mean square value when a small number of samples per period is available. It highlights the limitations of Simpson's 1/3 rule and Simpson's 3/8 rule, and shows that the newly proposed algorithm is optimal with respect to measurement accuracy and precision even in cases when the ratio of the sampling frequency and the signal's fundamental frequency is low. All theoretical results have been validated experimentally.

作为商用测量设备最优解的均方根值估算改进算法
本文证明,直接改变任意波形电压信号均方根值的估算算法,可以提高市售仪器的性能并降低测量不确定性,而无需对现有硬件进行任何升级。本文所进行的研究是对开发估算技术和数学模型的原创性贡献,这些估算技术和数学模型以测量为导向,不考虑给定周期内的采样数量,并依赖于与现有方法具有相同复杂性的数学计算。理论方法研究了数值积分问题,重点是在每周期样本数较少的情况下,用于估计均方根值的修正辛普森 1/3 规则和修正辛普森 3/8 规则。它强调了辛普森 1/3 规则和辛普森 3/8 规则的局限性,并表明即使在采样频率与信号基频之比很低的情况下,新提出的算法在测量精度和准确度方面也是最佳的。所有理论结果均已通过实验验证。
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来源期刊
Microprocessors and Microsystems
Microprocessors and Microsystems 工程技术-工程:电子与电气
CiteScore
6.90
自引率
3.80%
发文量
204
审稿时长
172 days
期刊介绍: Microprocessors and Microsystems: Embedded Hardware Design (MICPRO) is a journal covering all design and architectural aspects related to embedded systems hardware. This includes different embedded system hardware platforms ranging from custom hardware via reconfigurable systems and application specific processors to general purpose embedded processors. Special emphasis is put on novel complex embedded architectures, such as systems on chip (SoC), systems on a programmable/reconfigurable chip (SoPC) and multi-processor systems on a chip (MPSoC), as well as, their memory and communication methods and structures, such as network-on-chip (NoC). Design automation of such systems including methodologies, techniques, flows and tools for their design, as well as, novel designs of hardware components fall within the scope of this journal. Novel cyber-physical applications that use embedded systems are also central in this journal. While software is not in the main focus of this journal, methods of hardware/software co-design, as well as, application restructuring and mapping to embedded hardware platforms, that consider interplay between software and hardware components with emphasis on hardware, are also in the journal scope.
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