Investigation of Starting Behaviour of a Free-piston Linear Generator

A linear engine coupled to a permanent-magnet assembly becomes a linear generator engine (LG) which can produce electrical power. Its working principle is based on the free-piston two-stroke engine. The main difference between the LG and a conventional crank-slider engine is that the LG has only one...

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Veröffentlicht in:Journal of applied sciences (Asian Network for Scientific Information) 2012, Vol.12 (24), p.2592-2592
Hauptverfasser: Abidin, Ezrann Zharif Zainal, Ibrahim, Abdulwehab A, Aziz, A Rashid A, Zulkifli, Saiful A
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container_issue 24
container_start_page 2592
container_title Journal of applied sciences (Asian Network for Scientific Information)
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creator Abidin, Ezrann Zharif Zainal
Ibrahim, Abdulwehab A
Aziz, A Rashid A
Zulkifli, Saiful A
description A linear engine coupled to a permanent-magnet assembly becomes a linear generator engine (LG) which can produce electrical power. Its working principle is based on the free-piston two-stroke engine. The main difference between the LG and a conventional crank-slider engine is that the LG has only one moving part which is the piston-rod assembly (translator). The piston-rod assembly consists of two pistons and a rod, with one piston connected to each end of the rod and a magnet assembly at the center of the rod. Combustion energy will cause the piston-rod assembly to move freely back and forth between the two engine blocks. Magnetic field from the permanent magnet assembly will cut through conductor coils-which are externally located within the stationary part of the LG (stator iron)-to generate electricity. Thus, electrical power is generated directly from the moving piston. This paper presents results of the newly installed drivers and optimization of the combustion process to achieve higher combustion pressure.
doi_str_mv 10.3923/jas.2012.2592.2597
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source EZB-FREE-00999 freely available EZB journals; Science Alert
subjects Assembly
Combustion
Electric power generation
Engines
Generators
Magnetic fields
Optimization
Pistons
title Investigation of Starting Behaviour of a Free-piston Linear Generator
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