Abstract

At present, most large machinery and vehicle engines are electronically controlled but their electronic control systems are too expensive to be popularised and applied in small gasoline engines with relatively low prices. Therefore, small gasoline engines still use mechanical speed regulators. Mechanical speed regulators not only have the defects of inertia lag, friction resistance, inherent speed regulation and the like, but also have the disadvantage that dynamic performance and steady performance cannot be combined, which is not suitable for the increasingly improved speed regulation performance of gasoline engines. This paper describes the design of an electronically controlled intelligent governor for small gasoline engines. Starting from a low cost, it adopts the idea of “replacing part of the hardware with an intelligent sensing algorithm” and proposes an intelligent sensing algorithm scheme. It combines the “coarse tuning” of MAP and the “fine tuning” of adaptive expert PID. The system is proved experimentally and it not only overcomes the inherent defects of a mechanical governor and realises programmable speed regulation, but it also obtains good dynamic and steady performance, improves the power output of the engine, relieves the trouble of engine travelling and improves the freedom of carburetor matching.

Highlights

  • The single-cylinder gasoline engine is small in size, lightweight, cheap in price and easy to use It occupies an important position in various machine tools

  • According to the working characteristics of single cylinder gasoline engine, based on the reduction of hardware circuit, the corresponding signals and data are deeply analyzed and utilized by using the intelligent sensing technology scheme of piston stroke position introduced in this paper, and the parameters such as cylinder head temperature, crankshaft phase and load required in the program are obtained

  • Its advantages are as follows: on the one hand, the output power of the gasoline engine is increased but, on the other hand, the efficiency of the generator is improved, so that the efficiency of power generation is increased from approximately 81% to 86%, which improves the power of the generator set

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Summary

Engenharia Agrícola

DESIGN OF ELECTRONIC CONTROL GOVERNOR FOR A SINGLE CYLINDER GASOLINE ENGINE BASED ON AN INTELLIGENT SENSING ALGORITHM Lixiang Sun1*, Yan Yang, Fang Ma1, Wen Jing, Yibo Zheng, Hao Wu1. KEYWORDS electronic control, intelligent perception, dynamic and steady state performance, power, hunting

INTRODUCTION
Intelligent perception algorithm and scheme design
Crankshaft rotation direction
Design of Gasoline Electromechanical Speed Control System
Load Drag Torque
Hardware design of electronically controlled governor
Software Flowchart Design of Electric Control Governor
Program Design of Electric Control Governor
Motor drive subfunction
System experimental verification
Findings
CONCLUSIONS

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