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  4. Vibration suppression of a single-cylinder engine by means of multi-objective evolutionary optimisation
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Vibration suppression of a single-cylinder engine by means of multi-objective evolutionary optimisation

Author(s)
Sleesongsom, Suwin
Bureerat, Sujin
Date Issued
June 18, 2018
Type
Article
DOI
10.3390/su10062067
Abstract
This paper presents a new design strategy for the passive vibration suppression of a single-cylindrical engine (SCE) through multi-objective evolutionary optimisation. The vibration causes machine damages and human pain, which are unsustainable problemsthat need to be alleviated. Mathematical forced vibration analyses of a single-cylinder engine, including dynamic pressure force due to ignition combustion, are presented. A multi-objective design problem is set to find the shape and size variables of the crank and connecting rod of the engine. The objective functions consist of the minimisation of the crank and connecting rod mass, and the minimisation of vibration response while the SCE is subject to inertial force and pressure force. Moreover, design constraints include crank and rod safety. The design problem is tackled by using an adaptation of a hybrid of multi-objective population-based incremental learning and differential evolution (RPBIL-DE). The optimum results found that the proposed design strategy is a powerful tool for the vibration suppression of SCE.
Citation
Sustainability Switzerland, 10(6), 2018
Subjects

Crank-slider

Dynamic analysis

Multi-objective evolu...

Single-cylinder engin...

Vibration suppression...

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