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汽油机怠速滑模控制仿真研究 被引量:4
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作者 张永相 张文强 +1 位作者 董霖 刘建新 《系统仿真学报》 CAS CSCD 北大核心 2007年第19期4553-4556,4560,共5页
汽油机怠速不稳是目前实车怠速控制存在的主要问题。对此,基于汽油机实验模型,提出了一种怠速滑模控制策略,用神经网络作为怠速平衡工作点脉谱,按等趋近率设计滑模控制器,在含冲击的突变负载下对多目标怠速在Simulink下进行仿真。结果表... 汽油机怠速不稳是目前实车怠速控制存在的主要问题。对此,基于汽油机实验模型,提出了一种怠速滑模控制策略,用神经网络作为怠速平衡工作点脉谱,按等趋近率设计滑模控制器,在含冲击的突变负载下对多目标怠速在Simulink下进行仿真。结果表明,滑模控制可以显著减小怠速转速波动,且在空燃比和点火角含噪时很鲁棒,其瞬态最大波动幅值可低于±15rpm;同时它控制算法简单,硬软件实现容易,适合于实车应用。 展开更多
关键词 汽油机模型 怠速 滑模控制 仿真
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汽油机射流燃烧室的燃烧模拟计算 被引量:1
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作者 尚秀镜 郑进才 +1 位作者 李勇 刘友钧 《车用发动机》 北大核心 1998年第5期12-17,34,共7页
在介绍汽油机射流燃烧室过程的三区燃烧模型的基础上,与计算焰前氧化放热过程的简化化学动力学模型相结合,对射流燃烧室爆震进行了预测。通过燃烧模拟计算进一步证明了射流燃烧室的优越性,并为进一步研究燃烧过程提供了有效的工具。
关键词 射流燃烧室 汽油机燃烧模型 模拟
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Effects of working parameters on gasoline engine exergy balance 被引量:9
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作者 LIU Jing-ping FU Jian-qin +1 位作者 FENG Ren-hua ZHU Guo-hui 《Journal of Central South University》 SCIE EI CAS 2013年第7期1938-1946,共9页
To improve the energy utilization efficiency of internal combustion (IC) engine, exergy analysis was conducted on a passenger car gasoline engine. According to the thermodynamic theory of IC engine, in-cylinder exer... To improve the energy utilization efficiency of internal combustion (IC) engine, exergy analysis was conducted on a passenger car gasoline engine. According to the thermodynamic theory of IC engine, in-cylinder exergy balance model was built. The working processes of gasoline engine were simulated by using the GT-power. In this way, the required parameters were calculated and then gasoline engine exergy balance was obtained by programming on computer. On this basis, the influences of various parameters on exergy balance were analyzed. Results show that, the proportions of various forms of exergy in gasoline engine from high to low are irreversible loss, effective work, exhaust gas exergy and heat transfer exergy. Effective exergy proportion fluctuates with cylinder volumetric efficiency at full load, while it always increases with break mean effective pressure (BMEP) at part load. Exhaust gas exergy proportion is more sensitive to speed, and it increases with speed increasing except at the highest speed. The lower proportion of heat transfer exergy appears at high speed and high load. Irreversible loss is mainly influenced by load. At part load, higher BMEP results in lower proportion of irreversible loss; at full load, the proportion of irreversible loss changes little except at the highest speed. 展开更多
关键词 gasoline engine exergy balance waste heat recovery thermal efficiency energy conservation
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