Analysis Of Artificial Signals Of CPS, Spark Timing, And Fuel Injection Timing Toward The Engine Behaviour

Internal combustion (IC) engine is widely used in automotive. The mainstream engine that can be found in any automotive is spark ignition (SI) engine with four stroke cycle. The growth of electronic device in engine system is increased throughout the time. Mechanical system inside the engine system...

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Main Author: Jafri, Muhammad Nabil Asyraf
Format: Monograph
Language:English
Published: Universiti Sains Malaysia 2018
Subjects:
Online Access:http://eprints.usm.my/54116/
http://eprints.usm.my/54116/1/Analysis%20Of%20Artificial%20Signals%20Of%20CPS%2C%20Spark%20Timing%2C%20And%20Fuel%20Injection%20Timing%20Toward%20The%20Engine%20Behaviour_Muhammad%20Nabil%20Asyraf%20Jafri_M4_2018.pdf
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author Jafri, Muhammad Nabil Asyraf
author_facet Jafri, Muhammad Nabil Asyraf
author_sort Jafri, Muhammad Nabil Asyraf
building USM Institutional Repository
collection Online Access
description Internal combustion (IC) engine is widely used in automotive. The mainstream engine that can be found in any automotive is spark ignition (SI) engine with four stroke cycle. The growth of electronic device in engine system is increased throughout the time. Mechanical system inside the engine system slowly being replaced by the electronic system. Engine control unit (ECU) is a device that being used to control all the engine parameters whether it for is spark, fuel, speed, and other applications. ECU plays a vital role on how the engine performs. Engine knock is the major concern in the engine system. This phenomenon occurs due to an incomplete combustion inside the combustion chamber. Engine knock is a defect that may lead to less efficiency of the engine performance and damage to the engine components. This defect can be controlled by altering the spark timing or adjusting the fuel injection timing. This research is carried out with the aims to analyse the artificial signals of CPS and spark toward the engine behaviour and to study the fuel injection timing toward the knocking phenomenon. A test bed for the Modenas GT128 engine is fabricated and it is mounted onto the go-kart chassis. By using the microcontroller, a programmable code is used to generate the artificial signals and the signals will be analysed. The results show that the artificial signal is capable to alter the engine behaviour. Engine knock is possible to occur at idling speed and also at high speed operating condition.
first_indexed 2025-11-15T18:39:18Z
format Monograph
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institution Universiti Sains Malaysia
institution_category Local University
language English
last_indexed 2025-11-15T18:39:18Z
publishDate 2018
publisher Universiti Sains Malaysia
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spelling usm-541162022-08-16T04:27:57Z http://eprints.usm.my/54116/ Analysis Of Artificial Signals Of CPS, Spark Timing, And Fuel Injection Timing Toward The Engine Behaviour Jafri, Muhammad Nabil Asyraf T Technology TJ Mechanical engineering and machinery Internal combustion (IC) engine is widely used in automotive. The mainstream engine that can be found in any automotive is spark ignition (SI) engine with four stroke cycle. The growth of electronic device in engine system is increased throughout the time. Mechanical system inside the engine system slowly being replaced by the electronic system. Engine control unit (ECU) is a device that being used to control all the engine parameters whether it for is spark, fuel, speed, and other applications. ECU plays a vital role on how the engine performs. Engine knock is the major concern in the engine system. This phenomenon occurs due to an incomplete combustion inside the combustion chamber. Engine knock is a defect that may lead to less efficiency of the engine performance and damage to the engine components. This defect can be controlled by altering the spark timing or adjusting the fuel injection timing. This research is carried out with the aims to analyse the artificial signals of CPS and spark toward the engine behaviour and to study the fuel injection timing toward the knocking phenomenon. A test bed for the Modenas GT128 engine is fabricated and it is mounted onto the go-kart chassis. By using the microcontroller, a programmable code is used to generate the artificial signals and the signals will be analysed. The results show that the artificial signal is capable to alter the engine behaviour. Engine knock is possible to occur at idling speed and also at high speed operating condition. Universiti Sains Malaysia 2018-05-23 Monograph NonPeerReviewed application/pdf en http://eprints.usm.my/54116/1/Analysis%20Of%20Artificial%20Signals%20Of%20CPS%2C%20Spark%20Timing%2C%20And%20Fuel%20Injection%20Timing%20Toward%20The%20Engine%20Behaviour_Muhammad%20Nabil%20Asyraf%20Jafri_M4_2018.pdf Jafri, Muhammad Nabil Asyraf (2018) Analysis Of Artificial Signals Of CPS, Spark Timing, And Fuel Injection Timing Toward The Engine Behaviour. Project Report. Universiti Sains Malaysia, Pusat Pengajian Kejuruteraan Mekanikal. (Submitted)
spellingShingle T Technology
TJ Mechanical engineering and machinery
Jafri, Muhammad Nabil Asyraf
Analysis Of Artificial Signals Of CPS, Spark Timing, And Fuel Injection Timing Toward The Engine Behaviour
title Analysis Of Artificial Signals Of CPS, Spark Timing, And Fuel Injection Timing Toward The Engine Behaviour
title_full Analysis Of Artificial Signals Of CPS, Spark Timing, And Fuel Injection Timing Toward The Engine Behaviour
title_fullStr Analysis Of Artificial Signals Of CPS, Spark Timing, And Fuel Injection Timing Toward The Engine Behaviour
title_full_unstemmed Analysis Of Artificial Signals Of CPS, Spark Timing, And Fuel Injection Timing Toward The Engine Behaviour
title_short Analysis Of Artificial Signals Of CPS, Spark Timing, And Fuel Injection Timing Toward The Engine Behaviour
title_sort analysis of artificial signals of cps, spark timing, and fuel injection timing toward the engine behaviour
topic T Technology
TJ Mechanical engineering and machinery
url http://eprints.usm.my/54116/
http://eprints.usm.my/54116/1/Analysis%20Of%20Artificial%20Signals%20Of%20CPS%2C%20Spark%20Timing%2C%20And%20Fuel%20Injection%20Timing%20Toward%20The%20Engine%20Behaviour_Muhammad%20Nabil%20Asyraf%20Jafri_M4_2018.pdf