期刊文献+

并联式混合动力汽车能量管理的马尔可夫决策 被引量:8

Markov Decision Process for the Energy Management of Parallel Hybrid Vehicles
在线阅读 下载PDF
导出
摘要 为研究同轴并联式混合动力汽车的能量管理策略,建立了同轴并联式动力系统动态方程,分析了转矩需求无后效性的马尔可夫特性.在维持电池容量不变的条件下,以燃油消耗最小为优化目标,采用马尔可夫决策实施能量管理策略,并采用策略迭代方法求解了马尔可夫能量管理的转矩决策过程,在J1015工况和昆明工况进行了仿真,实现了能量管理的在线实施.结果表明,与基于动态规划的能量管理策略相比,马尔可夫决策的能量管理策略能在线实施,且电池容量变化更为平稳;在燃料消耗方面是全局次优的,在J1015行驶工况下100 km燃油消耗增加了1.32 L,在昆明行驶工况下100 km燃油消耗增加了1.59 L. In order to study the energy management strategy of single-shaft parallel hybrid electric vehicles, dynamic equations of the power-train system were set up to analyze the non-aftereffect property of the required torque. To achieve the optimization objective of minimizing the oil consumption under a fixed battery capacity, Markov decision process was carried out to implement the torque allocation strategy, and the policy iteration algorithm was used to solve the Markov decision model for energy management. In addition, the Markov decision process for energy management was simulated under the condition of J1015 driving cycles and Kunming driving cycles, and executed on line. The results show that compared to the strategy based on dynamic programming, the energy management strategy based on Markov decision process, which can be implemented on line, can make the battery capacity change more smoothly, but is globally sub-optimal in oil consumption: with the new strategy, the oil consumption is increased by 1.32 L per 100 km in case of J1015 driving cycles and 1.59 L per 100 km in case of Kuming driving cycles.
出处 《西南交通大学学报》 EI CSCD 北大核心 2012年第6期982-988,共7页 Journal of Southwest Jiaotong University
基金 科技部国际科技合作项目(2010DFB70770)
关键词 能量管理 马尔可夫决策 动态规划 并联式混合动力汽车 energy management Markov decision process dynamic programming parallel hybrid vehicle
作者简介 肖仁鑫(1978-),男,博士研究生,研究方向为混合动力汽车动力总成设计,E-mail:xrx1127@163.com
  • 相关文献

参考文献13

  • 1左义和,项昌乐,闫清东,王伟达.基于动态规划算法的混联混合动力汽车控制策略[J].吉林大学学报(工学版),2011,41(4):898-903. 被引量:24
  • 2申彩英,夏超英.基于改进动态算法的串联混合动力汽车控制策略[J].控制理论与运用,2011,28(3):427-431.
  • 3OLLE S. Optimal control and design of hybrid electric vehicles [ D]. Zurich: Swiss Federal Institute of Technology Zurich, 2009.
  • 4PEREZ L, ELVIO A. Optimization of power management in an hybrid electric vehicle using dynamic programming[ J]. Mathematics and Computers in Simulation, 2006, 73 ( I ) : 244-254.
  • 5JALIL N, AKHEIR N, SALMAN M. A rule-based energy management strategy for a series hybrid vehicle [ C ] // Proceedings of the 1997 American Control Conference. Albuauercme: IEEE. 1997 : 689-693.
  • 6古艳春,殷承良,张建武.并联混合动力汽车扭矩协调控制策略仿真研究[J].系统仿真学报,2007,19(3):631-636. 被引量:24
  • 7SCHOUTEN N J, SALMAN M A, KHEIR N A. Fuzzy logic control for parallel hybrid vehicle[J]. IEEE Transitions on Control Systems Technology, 2002, 10(3) : 460-468.
  • 8SCHOUTEN N J, SALMAN M A, KHEIR N A. Energy management strategies for parallel hybrid vehicles using fuzzy logic[ J ]. Control Engineering Practice, 2003, 11(2) : 171-177.
  • 9郭晋晟,王家明,杨林,卓斌.无级变速混联式混合动力客车能量分配策略[J].中国公路学报,2008,21(5):115-120. 被引量:6
  • 10SALMANX M, SCHOUTEN N J, KHEIR N A. Control strategies for parallel hybrid vehicles[ C] /J Proceedings of the American Control Conference. Chicago : AACC, 2000 : 524-528.

二级参考文献38

共引文献64

同被引文献85

  • 1李阳珍,张喜征.基于Markov过程的物流服务供应链可靠性分析[J].重庆交通大学学报(自然科学版),2012,31(4):895-899. 被引量:11
  • 2古艳春,殷承良,张建武.并联混合动力汽车扭矩协调控制策略仿真研究[J].系统仿真学报,2007,19(3):631-636. 被引量:24
  • 3铁道部标准计量研究所.TB/T1407-1998列车牵引计算规程[S].北京:中国标准出版社,1998.
  • 4EHSANI M, GAO Yimin, EMADI A. Modem electric, hybrid electric, and fuel cell vehicles fundamentals, theory, and design [ M ]. Second Edition. Boca Raton: CRC Press, 2009: 375-396.
  • 5JALIL N, KHEIR N A, SALMAN M. Rule-based energy man-agement strategy for a series hybrid vehicle[C]// Proceedings of the American Control Conference. Albuuerque : IEEE, 1997 : 689-695.
  • 6JOHANNESSON L, ASBOGARD M, EGARDT B. Assessing the potential predictive control for hybrid vehicle power train using stochastic dynamic programming[J]. Intelligent Transportation Systems, 2007, 8(1): 71-83.
  • 7MILLER J M, DESHPANDE U, DOUGHERTY T J, et al. Power electronic enabled active hybrid energy storage system and its economic viability[ C] // IEEE Applied Power Electronics Conference and Exposition. Washington D. C. : IEEE, 2009: 190-198.
  • 8MILLER A, HESS K, BAMES D. System design of a large fuel cell hybrid locomotive[J]. Journal of Power Sources, 2007, 173(2): 935-942.
  • 9FUJII T, TERAYA N, OSAWA M. Development of a NE train[J]. Japanese Railway Engineering, 2006, 156(4) : 62-70.
  • 10OOSTRA J, DUNGER W. Hybrid-rangier locomotive:technik und anwendungen[J]. ZEV Rail Glasers Annalen, 2009, 133(9): 365-369.

引证文献8

二级引证文献42

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部