{"id":{"repo_id":"gsu","oai_identifier":"oai:digitalcommons.georgiasouthern.edu:etd-1775"},"canonical_url":"https://search.dev.ndltd.org/etd/gsu/oai:digitalcommons.georgiasouthern.edu:etd-1775","repository":{"repo_id":"gsu","name":"Georgia Southern University","base_url":"https://digitalcommons.georgiasouthern.edu/do/oai/"},"display":{"title":"Development of a High Speed Data Acquisition System for Spark Ignition Engine","abstract":"Full engine control can only be accomplished with multi-input multi-output (MIMO) control system requiring measurement of variables for which no sensor/instrument is yet available in the Renewable Energy and Engines Laboratory, therefore a less detailed single input single output (SISO) engine model is developed. To develop the engine controller a model of the engine had to first be determined. Known Discrete-Event and Mean-Value models were the first choice, but could not be utilized because of the nature of the single cylinder intake manifold pressure. Therefore an engine model based on experimental data had to be developed. Using Matlab/ Simulink, xPC Target and data acquisition hardware a model of the single cylinder engine was developed. These models were developed by taking measurements of the engines dynamics such as engine speed, crank angle, air mass intake, spark timing, injection timing, and intake temperatures at different engine speed set points while running gasoline and then a gasoline and ethanol mix (E85). From which experimental coefficients were determined necessary for the model.","abstract_html":"Full engine control can only be accomplished with multi-input multi-output (MIMO) control system requiring measurement of variables for which no sensor/instrument is yet available in the Renewable Energy and Engines Laboratory, therefore a less detailed single input single output (SISO) engine model is developed. To develop the engine controller a model of the engine had to first be determined. Known Discrete-Event and Mean-Value models were the first choice, but could not be utilized because of the nature of the single cylinder intake manifold pressure. Therefore an engine model based on experimental data had to be developed. Using Matlab/ Simulink, xPC Target and data acquisition hardware a model of the single cylinder engine was developed. These models were developed by taking measurements of the engines dynamics such as engine speed, crank angle, air mass intake, spark timing, injection timing, and intake temperatures at different engine speed set points while running gasoline and then a gasoline and ethanol mix (E85). From which experimental coefficients were determined necessary for the model.","abstract_has_math":false,"creators":["Griswold, Cory Levette"],"institution":null,"degree_name":"Master of Science in Applied Engineering (M.S.A.E.)","degree_level":"Thesis (open access)","degree_discipline":"Department of Mechanical Engineering","degree_department":null,"school":null,"contributors":["Valentin A. Soloiu","Yan Wu"],"advisors":[],"committee_chairs":[],"committee_members":[],"year":2011,"date_issued":"2011-07-01T07:00:00Z","date_published":"2011-07-01T07:00:00Z","updated_at":"2026-07-24T02:27:26Z","subjects":["ETD","Spark ignition","SI engine","High speed data acquisition","Single cylinder engine"],"languages":[],"rights":[],"rights_urls":[],"identifier_entries":[]},"links":{"outbound_url":"https://digitalcommons.georgiasouthern.edu/etd/775","outbound_label":"Repository record","outbound_source":"dc:identifier"},"metadata_groups":[{"id":"people","label":"People","entries":[{"key":"dc:contributor","label":"Contributor","values":["Valentin A. 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To develop the engine controller a model of the engine had to first be determined. Known Discrete-Event and Mean-Value models were the first choice, but could not be utilized because of the nature of the single cylinder intake manifold pressure. Therefore an engine model based on experimental data had to be developed. Using Matlab/ Simulink, xPC Target and data acquisition hardware a model of the single cylinder engine was developed. These models were developed by taking measurements of the engines dynamics such as engine speed, crank angle, air mass intake, spark timing, injection timing, and intake temperatures at different engine speed set points while running gasoline and then a gasoline and ethanol mix (E85). From which experimental coefficients were determined necessary for the model."]},{"key":"dc:title","label":"Title","values":["Development of a High Speed Data Acquisition System for Spark Ignition Engine"]}]}],"canonical_facts":{"dc:contributor":["Valentin A. Soloiu","Yan Wu"],"dc:creator":["Griswold, Cory Levette"],"dc:date.available":["2013-10-17T07:00:00Z"],"dc:description.abstract":["Full engine control can only be accomplished with multi-input multi-output (MIMO) control system requiring measurement of variables for which no sensor/instrument is yet available in the Renewable Energy and Engines Laboratory, therefore a less detailed single input single output (SISO) engine model is developed. To develop the engine controller a model of the engine had to first be determined. Known Discrete-Event and Mean-Value models were the first choice, but could not be utilized because of the nature of the single cylinder intake manifold pressure. Therefore an engine model based on experimental data had to be developed. Using Matlab/ Simulink, xPC Target and data acquisition hardware a model of the single cylinder engine was developed. These models were developed by taking measurements of the engines dynamics such as engine speed, crank angle, air mass intake, spark timing, injection timing, and intake temperatures at different engine speed set points while running gasoline and then a gasoline and ethanol mix (E85). From which experimental coefficients were determined necessary for the model."],"dc:identifier":["https://digitalcommons.georgiasouthern.edu/etd/775"],"dc:subject":["ETD","Spark ignition","SI engine","High speed data acquisition","Single cylinder engine"],"dc:title":["Development of a High Speed Data Acquisition System for Spark Ignition Engine"],"thesis:degree_discipline":["Department of Mechanical Engineering"],"thesis:degree_level":["Thesis (open access)"],"thesis:degree_name":["Master of Science in Applied Engineering (M.S.A.E.)"]},"updated_at":"2026-07-24T02:27:26Z"}