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    Proceedings Volume Cover
    ASME 2019 Dynamic Systems and Control Conference
    October 8–11, 2019
    Park City, Utah, USA
    Conference Sponsors:
    • Dynamic Systems and Control Division
    Volume 2: Modeling and Control of Engine and Aftertreatment Systems; Modeling and Control of IC Engines and Aftertreatment Systems; Modeling and Validation; Motion Planning and Tracking Control; Multi-Agent and Networked Systems; Renewable and Smart Energy Systems; Thermal Energy Systems; Uncertain Systems and Robustness; Unmanned Ground and Aerial Vehicles; Vehicle Dynamics and Stability; Vibrations: Modeling, Analysis, and Control
    ISBN:
    978-0-7918-5915-5
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    PROCEEDINGS PAPER

    Control-Oriented Physics-Based NOx Emission Model for a Diesel Engine With Exhaust Gas Recirculation

    Saravanan Duraiarasan,
    Saravanan Duraiarasan
    University of Michigan
    ,
    Ann Arbor, MI
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    Rasoul Salehi,
    Rasoul Salehi
    University of Michigan
    ,
    Ann Arbor, MI
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    Anna Stefanopoulou,
    Anna Stefanopoulou
    University of Michigan
    ,
    Ann Arbor, MI
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    Siddharth Mahesh,
    Siddharth Mahesh
    Detroit Diesel Corporation
    ,
    Detroit, MI
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    Marc Allain
    Marc Allain
    Detroit Diesel Corporation
    ,
    Detroit, MI
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    Author Information
    Saravanan Duraiarasan
    University of Michigan
    ,
    Ann Arbor, MI
    Rasoul Salehi
    University of Michigan
    ,
    Ann Arbor, MI
    Anna Stefanopoulou
    University of Michigan
    ,
    Ann Arbor, MI
    Siddharth Mahesh
    Detroit Diesel Corporation
    ,
    Detroit, MI
    Marc Allain
    Detroit Diesel Corporation
    ,
    Detroit, MI
    Paper No: DSCC2019-9247, V002T12A006; 1 page
    https://doi.org/10.1115/DSCC2019-9247
    Published Online: November 26, 2019
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    Citation

    Duraiarasan, S, Salehi, R, Stefanopoulou, A, Mahesh, S, & Allain, M. "Control-Oriented Physics-Based NOx Emission Model for a Diesel Engine With Exhaust Gas Recirculation." Proceedings of the ASME 2019 Dynamic Systems and Control Conference. Volume 2: Modeling and Control of Engine and Aftertreatment Systems; Modeling and Control of IC Engines and Aftertreatment Systems; Modeling and Validation; Motion Planning and Tracking Control; Multi-Agent and Networked Systems; Renewable and Smart Energy Systems; Thermal Energy Systems; Uncertain Systems and Robustness; Unmanned Ground and Aerial Vehicles; Vehicle Dynamics and Stability; Vibrations: Modeling, Analysis, and Control. Park City, Utah, USA. October 8–11, 2019. V002T12A006. ASME. https://doi.org/10.1115/DSCC2019-9247

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      Abstract

      Publisher’s Note:

      This paper was selected for publication in ASME Letters in Dynamic Systems and Control.

      https://www.asmedigitalcollection.asme.org/lettersdynsys/article/doi/10.1115/1.4046450/1074858/Control-Oriented-Physics-Based-NOX-Emission-Model

      Volume Subject Area:
      Modeling and Control of IC Engines and Aftertreatment Systems
      Keywords:
      control-oriented model, oxides of nitrogen (NOx) model, heavy duty diesel engine, reaction zone temperature model, start of injection, exhaust gas recirculation, fuel rail pressure, needle opening pressure
      This content is only available via PDF.
      Copyright © 2019 by ASME
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