The Performance Improvement of the Low-Cost Ultrasonic Range Finder (HC-SR04) Using Newton’s Polynomial Interpolation Algorithm

The ultrasonic range finder sensors are widely used sensor in many applications such as computer applications, general purpose applications, medical applications, automotive applications and industrial grade applications. The ultrasonic range finder sensor has many advantages. The advantages are eas...

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Bibliographic Details
Main Authors: Gutama Indra Gandha, Dedi Nurcipto
Format: Article
Language:Indonesian
Published: LPPM Institut Teknologi Telkom Purwokerto 2019-12-01
Series:Jurnal Infotel
Subjects:
Online Access:https://ejournal.st3telkom.ac.id/index.php/infotel/article/view/456
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spelling doaj-a79267425d9e4a1f91a516872dd304b62020-11-25T03:29:10ZindLPPM Institut Teknologi Telkom PurwokertoJurnal Infotel2085-36882460-09972019-12-0111410.20895/infotel.v11i4.456456The Performance Improvement of the Low-Cost Ultrasonic Range Finder (HC-SR04) Using Newton’s Polynomial Interpolation AlgorithmGutama Indra GandhaDedi NurciptoThe ultrasonic range finder sensors are widely used sensor in many applications such as computer applications, general purpose applications, medical applications, automotive applications and industrial grade applications. The ultrasonic range finder sensor has many advantages. The advantages are easy to use, fast in measuring process, non-contact measurement and suitable for air and underwater environment. However, the ultrasonic range finder has deviation especially for low-cost sensor. It affects the accuracy level of the measurement result that performed by its sensor directly. The HC-SR04 categorized as a low-cost ultrasonic range finder sensor. This sensor has significant error level. The improvement of the accuracy level of this low-cost ultrasonic sensor is expected to this research. The Newton’s polynomial interpolation algorithm has been used in this research to reduce the error during the measurement process. The implementation of Newton’s polynomial interpolation has succeeded to improve the sensor accuracy. The MSE level of 29,96 is obtained without the Newton’s Polynomial Interpolation implementation. The implementation of the Newton’s Polynomial Interpolation algorithm has succeeded to increase the accuracy level of the sensor by 55,54%. It has been proofed by the decrease of MSE level by 13,32.https://ejournal.st3telkom.ac.id/index.php/infotel/article/view/456ultrasonic range finderhc-sr04newton’s polynomial interpolation
collection DOAJ
language Indonesian
format Article
sources DOAJ
author Gutama Indra Gandha
Dedi Nurcipto
spellingShingle Gutama Indra Gandha
Dedi Nurcipto
The Performance Improvement of the Low-Cost Ultrasonic Range Finder (HC-SR04) Using Newton’s Polynomial Interpolation Algorithm
Jurnal Infotel
ultrasonic range finder
hc-sr04
newton’s polynomial interpolation
author_facet Gutama Indra Gandha
Dedi Nurcipto
author_sort Gutama Indra Gandha
title The Performance Improvement of the Low-Cost Ultrasonic Range Finder (HC-SR04) Using Newton’s Polynomial Interpolation Algorithm
title_short The Performance Improvement of the Low-Cost Ultrasonic Range Finder (HC-SR04) Using Newton’s Polynomial Interpolation Algorithm
title_full The Performance Improvement of the Low-Cost Ultrasonic Range Finder (HC-SR04) Using Newton’s Polynomial Interpolation Algorithm
title_fullStr The Performance Improvement of the Low-Cost Ultrasonic Range Finder (HC-SR04) Using Newton’s Polynomial Interpolation Algorithm
title_full_unstemmed The Performance Improvement of the Low-Cost Ultrasonic Range Finder (HC-SR04) Using Newton’s Polynomial Interpolation Algorithm
title_sort performance improvement of the low-cost ultrasonic range finder (hc-sr04) using newton’s polynomial interpolation algorithm
publisher LPPM Institut Teknologi Telkom Purwokerto
series Jurnal Infotel
issn 2085-3688
2460-0997
publishDate 2019-12-01
description The ultrasonic range finder sensors are widely used sensor in many applications such as computer applications, general purpose applications, medical applications, automotive applications and industrial grade applications. The ultrasonic range finder sensor has many advantages. The advantages are easy to use, fast in measuring process, non-contact measurement and suitable for air and underwater environment. However, the ultrasonic range finder has deviation especially for low-cost sensor. It affects the accuracy level of the measurement result that performed by its sensor directly. The HC-SR04 categorized as a low-cost ultrasonic range finder sensor. This sensor has significant error level. The improvement of the accuracy level of this low-cost ultrasonic sensor is expected to this research. The Newton’s polynomial interpolation algorithm has been used in this research to reduce the error during the measurement process. The implementation of Newton’s polynomial interpolation has succeeded to improve the sensor accuracy. The MSE level of 29,96 is obtained without the Newton’s Polynomial Interpolation implementation. The implementation of the Newton’s Polynomial Interpolation algorithm has succeeded to increase the accuracy level of the sensor by 55,54%. It has been proofed by the decrease of MSE level by 13,32.
topic ultrasonic range finder
hc-sr04
newton’s polynomial interpolation
url https://ejournal.st3telkom.ac.id/index.php/infotel/article/view/456
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