OPTIMASI PERMUKAAN RESPON KUADRATIK MENGGUNAKAN ANALISIS RIDGE

Response surfaces method is a method that aims to determine the optimal operating conditions in an experiment. The response characteristics of operating conditions can be a maximum, minimum, or saddle point. In some situations where a stationary point has no value, for example, a stationary point is...

Full description

Saved in:
Bibliographic Details
Main Authors: , YUFAN PUTRI ASTRINI, , Yunita Wulan Sari, S.Si., M.Sc.
Format: Theses and Dissertations NonPeerReviewed
Published: [Yogyakarta] : Universitas Gadjah Mada 2013
Subjects:
ETD
Online Access:https://repository.ugm.ac.id/126656/
http://etd.ugm.ac.id/index.php?mod=penelitian_detail&sub=PenelitianDetail&act=view&typ=html&buku_id=66884
Tags: Add Tag
No Tags, Be the first to tag this record!
Institution: Universitas Gadjah Mada
id id-ugm-repo.126656
record_format dspace
spelling id-ugm-repo.1266562016-03-04T08:44:38Z https://repository.ugm.ac.id/126656/ OPTIMASI PERMUKAAN RESPON KUADRATIK MENGGUNAKAN ANALISIS RIDGE , YUFAN PUTRI ASTRINI , Yunita Wulan Sari, S.Si., M.Sc. ETD Response surfaces method is a method that aims to determine the optimal operating conditions in an experiment. The response characteristics of operating conditions can be a maximum, minimum, or saddle point. In some situations where a stationary point has no value, for example, a stationary point is at the saddle point and stationary point which causes minimum or maximum response point outside the original region, needs to be done a specific analysis to handle that. This analysis called ridge analysis. Ridge analysis is a useful procedure to optimize response prediction in hyperspherical centralized quadratic model. This procedure calculates the estimated ridge on the optimum response for increasing radii from the center of the actual experiments. The case study used in this thesis is the optimization of the power torque TL lights against low air, low air cooling, and natural gas pressure. Experimental design using central composite design (CCD) with the number of experiments at 23 runs. The analysis showed that the optimal condition is obtained when the pressure of low air 3,80125 Kpa, low air cooling 7,3515 Kpa, and natural gas 4,97 Kpa, that is when the strength of the torque reaches 3,11125 Newton meter. [Yogyakarta] : Universitas Gadjah Mada 2013 Thesis NonPeerReviewed , YUFAN PUTRI ASTRINI and , Yunita Wulan Sari, S.Si., M.Sc. (2013) OPTIMASI PERMUKAAN RESPON KUADRATIK MENGGUNAKAN ANALISIS RIDGE. UNSPECIFIED thesis, UNSPECIFIED. http://etd.ugm.ac.id/index.php?mod=penelitian_detail&sub=PenelitianDetail&act=view&typ=html&buku_id=66884
institution Universitas Gadjah Mada
building UGM Library
country Indonesia
collection Repository Civitas UGM
topic ETD
spellingShingle ETD
, YUFAN PUTRI ASTRINI
, Yunita Wulan Sari, S.Si., M.Sc.
OPTIMASI PERMUKAAN RESPON KUADRATIK MENGGUNAKAN ANALISIS RIDGE
description Response surfaces method is a method that aims to determine the optimal operating conditions in an experiment. The response characteristics of operating conditions can be a maximum, minimum, or saddle point. In some situations where a stationary point has no value, for example, a stationary point is at the saddle point and stationary point which causes minimum or maximum response point outside the original region, needs to be done a specific analysis to handle that. This analysis called ridge analysis. Ridge analysis is a useful procedure to optimize response prediction in hyperspherical centralized quadratic model. This procedure calculates the estimated ridge on the optimum response for increasing radii from the center of the actual experiments. The case study used in this thesis is the optimization of the power torque TL lights against low air, low air cooling, and natural gas pressure. Experimental design using central composite design (CCD) with the number of experiments at 23 runs. The analysis showed that the optimal condition is obtained when the pressure of low air 3,80125 Kpa, low air cooling 7,3515 Kpa, and natural gas 4,97 Kpa, that is when the strength of the torque reaches 3,11125 Newton meter.
format Theses and Dissertations
NonPeerReviewed
author , YUFAN PUTRI ASTRINI
, Yunita Wulan Sari, S.Si., M.Sc.
author_facet , YUFAN PUTRI ASTRINI
, Yunita Wulan Sari, S.Si., M.Sc.
author_sort , YUFAN PUTRI ASTRINI
title OPTIMASI PERMUKAAN RESPON KUADRATIK MENGGUNAKAN ANALISIS RIDGE
title_short OPTIMASI PERMUKAAN RESPON KUADRATIK MENGGUNAKAN ANALISIS RIDGE
title_full OPTIMASI PERMUKAAN RESPON KUADRATIK MENGGUNAKAN ANALISIS RIDGE
title_fullStr OPTIMASI PERMUKAAN RESPON KUADRATIK MENGGUNAKAN ANALISIS RIDGE
title_full_unstemmed OPTIMASI PERMUKAAN RESPON KUADRATIK MENGGUNAKAN ANALISIS RIDGE
title_sort optimasi permukaan respon kuadratik menggunakan analisis ridge
publisher [Yogyakarta] : Universitas Gadjah Mada
publishDate 2013
url https://repository.ugm.ac.id/126656/
http://etd.ugm.ac.id/index.php?mod=penelitian_detail&sub=PenelitianDetail&act=view&typ=html&buku_id=66884
_version_ 1681232475907424256