2009Unpublished venueRequires access

A simulating model of automotive power system based on the finite state machine

Hongbin Li, Dong Li

Open publisher page 1 citations

Abstract

Simulation experiment was performed in order to validate the performance of AMT (Automated Mechanical Transmission) control system. Based on the finite state machine, a simulating model which can express dynamic characteristics of the automotive power system in every driving phase is proposed. In the experiment, a hard-in-loop half-real simulating system is established in which the simulation model is working as its kernel. Results of simulation experiment show that the model can effectively simulate the performance of the automotive power system and therefore can be used to evaluate the performance of the AMT control system.

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What this paper is about

Simulation experiment was performed in order to validate the performance of AMT (Automated Mechanical Transmission) control system. Based on the finite state machine, a simulating model which can express dynamic characteristics of the automotive power system in every driving phase is proposed. In the experiment, a hard-in-loop half-real simulating system is established in which the simulation model is working as its kernel. Results of simulation experiment show that the model can effectively simulate the performance of the automotive power system and therefore can be used to evaluate the performance of the AMT control system.

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Available abstract

Simulation experiment was performed in order to validate the performance of AMT (Automated Mechanical Transmission) control system. Based on the finite state machine, a simulating model which can express dynamic characteristics of the automotive power system in every driving phase is proposed. In the experiment, a hard-in-loop half-real simulating system is established in which the simulation model is working as its kernel. Results of simulation experiment show that the model can effectively simulate the performance of the automotive power system and therefore can be used to evaluate the performance of the AMT control system.

Key concepts: Automotive industry, Computer science, Kernel (algebra), Power (physics), Transmission system, Finite-state machine, Automotive engineering, State (computer science)

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