Model predictive Control of Homogeneous Charge Compression Ignition (HCCI) engine dynamics

Munich(2006)

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摘要
The homogeneous charge compression ignition (HCCI) combustion principle lacks direct ignition timing control, instead the auto-ignition depends on the operating condition and fast combustion phasing control is necessary for reliable operation. A six-cylinder heavy-duty HCCI engine was controlled on a cycle-to-cycle basis in real time using a variety of sensors, actuators and control structures for control of the HCCI combustion in comparison. Combustion phasing control based on ion current was compared to feedback control based on cylinder pressure. Two actuators were compared, dual fuel and variable valve actuation (VVA). Model-based control synthesis requiring dynamic models of low complexity and HCCI combustion models were estimated by system identification and by physical modeling. The models identified by system identification were used to design model-predictive control (MPC) with several desirable features and today applicable to relatively fast systems. Both control of the combustion phasing and control of load-torque with simultaneous minimization of the fuel consumption and emissions were included
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关键词
combustion,ignition,internal combustion engines,predictive control,autoignition,combustion phasing control,combustion principle,cylinder pressure,dual fuel,dynamic combustion model,engine dynamics,feedback control,fuel consumption minimization,fuel emission minimization,homogeneous charge compression ignition,ignition timing control,ion current,load-torque control,model predictive control,model-based control synthesis,six-cylinder engine control,system identification,variable valve actuation,control structure,engines,operant conditioning,real time,valves,tin,physical model,fuel consumption,solid modeling
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