AFR and fuel cut-off modeling of LPG-fueled engine based on engine, transmission, and brake system using fuzzy logic controller (FLC)

During deceleration, continuous fuel flows into the engine not only causing over fuel consumption but also increasing exhausts emissions. Therefore, this paper presents a simulation of AFR and fuel cut-off modeling in the LPG-fueled vehicle using Fuzzy Logic Controller (FLC). The third generation of...

Full description

Bibliographic Details
Main Authors: Muji Setiyo, Suroto Munahar
Format: Article
Language:English
Published: Indonesian Institute of Sciences 2017-07-01
Series:Journal of Mechatronics, Electrical Power, and Vehicular Technology
Subjects:
FLC
AFR
Online Access:http://mevjournal.com/index.php/mev/article/view/374
id doaj-e5d43dbf99f54874b4a75aa1f9e42497
record_format Article
spelling doaj-e5d43dbf99f54874b4a75aa1f9e424972020-11-25T03:51:09ZengIndonesian Institute of SciencesJournal of Mechatronics, Electrical Power, and Vehicular Technology2087-33792088-69852017-07-0181505910.14203/j.mev.2017.v8.50-59180AFR and fuel cut-off modeling of LPG-fueled engine based on engine, transmission, and brake system using fuzzy logic controller (FLC)Muji Setiyo0Suroto Munahar1Universitas Muhammadiyah MagelangUniversitas Muhammadiyah MagelangDuring deceleration, continuous fuel flows into the engine not only causing over fuel consumption but also increasing exhausts emissions. Therefore, this paper presents a simulation of AFR and fuel cut-off modeling in the LPG-fueled vehicle using Fuzzy Logic Controller (FLC). The third generation of LPG kits (Liquid Phase Injection, LPI) was chosen due to its technological equivalency to EFI gasoline engine and promising to be developed. Given that the fuel system control is complex and non-linear, FLC has been selected because of simple, easy to understand, and tolerant to improper data. Simulation results show that the AFR and fuel cut-off controller able to maintenance AFR at the stoichiometric range during normal operation and able to cut the fuel flow at deceleration time for saving fuel and reducing emissions.http://mevjournal.com/index.php/mev/article/view/374LPG-fueled enginedecelerationFLCAFRfuel cut-off
collection DOAJ
language English
format Article
sources DOAJ
author Muji Setiyo
Suroto Munahar
spellingShingle Muji Setiyo
Suroto Munahar
AFR and fuel cut-off modeling of LPG-fueled engine based on engine, transmission, and brake system using fuzzy logic controller (FLC)
Journal of Mechatronics, Electrical Power, and Vehicular Technology
LPG-fueled engine
deceleration
FLC
AFR
fuel cut-off
author_facet Muji Setiyo
Suroto Munahar
author_sort Muji Setiyo
title AFR and fuel cut-off modeling of LPG-fueled engine based on engine, transmission, and brake system using fuzzy logic controller (FLC)
title_short AFR and fuel cut-off modeling of LPG-fueled engine based on engine, transmission, and brake system using fuzzy logic controller (FLC)
title_full AFR and fuel cut-off modeling of LPG-fueled engine based on engine, transmission, and brake system using fuzzy logic controller (FLC)
title_fullStr AFR and fuel cut-off modeling of LPG-fueled engine based on engine, transmission, and brake system using fuzzy logic controller (FLC)
title_full_unstemmed AFR and fuel cut-off modeling of LPG-fueled engine based on engine, transmission, and brake system using fuzzy logic controller (FLC)
title_sort afr and fuel cut-off modeling of lpg-fueled engine based on engine, transmission, and brake system using fuzzy logic controller (flc)
publisher Indonesian Institute of Sciences
series Journal of Mechatronics, Electrical Power, and Vehicular Technology
issn 2087-3379
2088-6985
publishDate 2017-07-01
description During deceleration, continuous fuel flows into the engine not only causing over fuel consumption but also increasing exhausts emissions. Therefore, this paper presents a simulation of AFR and fuel cut-off modeling in the LPG-fueled vehicle using Fuzzy Logic Controller (FLC). The third generation of LPG kits (Liquid Phase Injection, LPI) was chosen due to its technological equivalency to EFI gasoline engine and promising to be developed. Given that the fuel system control is complex and non-linear, FLC has been selected because of simple, easy to understand, and tolerant to improper data. Simulation results show that the AFR and fuel cut-off controller able to maintenance AFR at the stoichiometric range during normal operation and able to cut the fuel flow at deceleration time for saving fuel and reducing emissions.
topic LPG-fueled engine
deceleration
FLC
AFR
fuel cut-off
url http://mevjournal.com/index.php/mev/article/view/374
work_keys_str_mv AT mujisetiyo afrandfuelcutoffmodelingoflpgfueledenginebasedonenginetransmissionandbrakesystemusingfuzzylogiccontrollerflc
AT surotomunahar afrandfuelcutoffmodelingoflpgfueledenginebasedonenginetransmissionandbrakesystemusingfuzzylogiccontrollerflc
_version_ 1724488441459113984