DocumentCode
3175976
Title
Self-Oscillating Resonance Tracking Ignition System Design Using the Method of Describing Function
Author
Smith, Daniel ; Gökçek, Cevat
Author_Institution
Michigan State Univ., East Lansing
fYear
2007
fDate
9-13 July 2007
Firstpage
5112
Lastpage
5117
Abstract
Reducing emissions and increasing efficiency of modern spark ignited internal combustion engines are crucial for the future of the environment and the global economy. This paper presents a plasma ignition system with self-oscillating resonance tracking capability to promote these objectives. The proposed ignition system is composed of a high quality factor series RLC circuit driven by a radio frequency (RF) generator to start and sustain a plasma torch for a prescribed duration inside the combustion chamber. Resonant frequency tracking is achieved using an integrated self-oscillating feedback topology. A phase-lead compensator is used to compensate for the propagation delay in the RF generator and a signum type nonlinearity is used to achieve the amplitude limitation for sustained oscillation. The describing function method is employed for analysis and design of the self-oscillating resonance tracking system. Simulation and experimental results are presented to illustrate the performance of the proposed ignition system and to demonstrate its feasibility in practical applications.
Keywords
RLC circuits; feedback; ignition; internal combustion engines; plasma torches; topology; RLC circuit; amplitude limitation; combustion chamber; describing function method; emission reduction; high quality factor series; ignition system design; phase-lead compensator; plasma ignition system; plasma torch; propagation delay; radio frequency generator; resonant frequency tracking; self-oscillating feedback topology; self-oscillating resonance tracking; signum type nonlinearity; spark ignited internal combustion engines; Feedback; Ignition; Internal combustion engines; Plasmas; Q factor; RLC circuits; Radio frequency; Resonance; Resonant frequency; Sparks; Ignition systems; describing function; resonance tracking; self-oscillating systems;
fLanguage
English
Publisher
ieee
Conference_Titel
American Control Conference, 2007. ACC '07
Conference_Location
New York, NY
ISSN
0743-1619
Print_ISBN
1-4244-0988-8
Electronic_ISBN
0743-1619
Type
conf
DOI
10.1109/ACC.2007.4283116
Filename
4283116
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