首页> 外文期刊>Defence Science Journal >Optimisation of Diesel Engine for Hybrid Military Tracked Vehicles using Matlab-Simulink
【24h】

Optimisation of Diesel Engine for Hybrid Military Tracked Vehicles using Matlab-Simulink

机译:基于Matlab-Simulink的混合动力履带车柴油机优化

获取原文
获取原文并翻译 | 示例
           

摘要

The demand in the technology requirements for diesel engines is growing keeping hybrid vehicles in mind. In future the diesel engine no longer drives the wheels directly; as a result the engine can be engaged at a limited number of operating points, thus, offering an opportunity to optimise the fuel efficiency and performance at those operating points. The extent to which this optimisation is possible is limited by practical considerations. Also if the positive and negative power peaks in vehicle during mobility (e.g. acceleration and regenerative braking respectively) can be accommodated by high-power batteries, then the size of the engine can be considerably reduced. The engine's operating points depend on the power-control strategy. The consequences of modifications to these operating points will have an effect on performance and efficiency. As in series hybrid only a limited number of operating points are involved and dynamic performance requirements are not imposed on the diesel engine, significant improvements can be achieved by the optimisation of the diesel engine at these operating points. The feasibility of optimisation of the engine at these operating points can be done by modification on the injection systems, the valve timings and other such parameters. This kind of approach requires the use of complex and repeated experimental analysis of the engine which is costly, cumbersome and time consuming. An alternative to this kind of experimental approach is to develop a simulation model of the engine with the generator in Matlab-Simulink.
机译:考虑到混合动力汽车,对柴油发动机的技术要求的需求正在增长。将来,柴油机将不再直接驱动车轮。结果,发动机可以在有限数量的工作点接合,因此,提供了在这些工作点优化燃油效率和性能的机会。实际考虑限制了此优化的范围。同样,如果在行驶期间车辆中的正功率峰值和负功率峰值(例如分别为加速和再生制动)可以由高功率电池来容纳,那么发动机的尺寸可以大大减小。发动机的工作点取决于功率控制策略。修改这些工作点的后果将影响性能和效率。由于串联式混合动力仅涉及有限数量的工作点,并且对柴油发动机不施加动态性能要求,因此通过在这些工作点处优化柴油发动机可以实现重大改进。在这些工作点优化发动机的可行性可以通过修改喷射系统,气门正时和其他此类参数来实现。这种方法需要对发动机进行复杂且重复的实验分析,这既昂贵又麻烦且费时。这种实验方法的替代方法是在Matlab-Simulink中开发带有发电机的发动机仿真模型。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号