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Multi-objective parameter optimization for a single-shaft series-parallel plug-in hybrid electric bus using genetic algorithm 被引量:4
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作者 CHEN Zheng ZHOU LiYan +2 位作者 SUN Yong MA ZiLin HAN ZongQi 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2016年第8期1176-1185,共10页
Recently, the single-shaft series-parallel powertrain of Plug-in Hybrid Electric Bus (PHEB) has become one of the most popu- lar powertrains due to its alterable operating modes, excellent fuel economy and strong ad... Recently, the single-shaft series-parallel powertrain of Plug-in Hybrid Electric Bus (PHEB) has become one of the most popu- lar powertrains due to its alterable operating modes, excellent fuel economy and strong adaptability for driving cycles. Never- theless, for configuring the PHEB with single-shaft series-parallel powertrain in the development stage, it still faces greater challenge than other configurations when choosing and matching the main component parameters. Motivated by this issue, a comprehensive multi-objectives optimization strategy based on Genetic Algorithm (GA) is developed for the PHEB with the typical powertrain. First, considering repeatability and regularity of bus route, the methods of off-line data processing and mathematical statistics are adopted, to obtain a representative driving cycle, which could well reflect the general characteristic of the real-world bus route. Then, the economical optimization objective is defined, which is consist of manufacturing costs of the key components and energy consumption, and combined with the dynamical optimization objective, a multi-objective op- timization function is put forward. Meanwhile, GA algorithm is used to optimize the parameters, for the optimal components combination of the novel series-parallel powertrain. Finally, a comparison with the prototype is carried out to verify the per- formance of the optimized powertrain along driving cycles. Simulation results indicate that the parameters of powertrain com- ponents obtained by the proposed comprehensive multi-objectives optimization strategy might get better fuel economy, meanwhile ensure the dynamic performance of PHEB. In contrast to the original, the costs declined by 18%. Hence, the strat- egy would provide a theoretical guidance on parameter selection for PHEB manufacturers. 展开更多
关键词 multi-objective parameter optimization single-shaft series-parallel powertrain plug-in hybrid electric bus (PHEB) genetic algorithm (GA) driving cycle city bus route
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基于改进遗传算法的网络路由优化研究 被引量:7
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作者 陈乐瑞 孔金生 《计算机应用与软件》 CSCD 北大核心 2013年第4期135-137,共3页
针对QoS多目标优化问题,提出一种改进的遗传算法,并将其应用到解决路由优化问题。该算法在路由器数学模型的基础上满足带宽、延迟、花费等要求,以资源消耗和负载均衡分布为目标,使得资源消耗最小同时负载均衡分布,从而降低网路拥塞的发... 针对QoS多目标优化问题,提出一种改进的遗传算法,并将其应用到解决路由优化问题。该算法在路由器数学模型的基础上满足带宽、延迟、花费等要求,以资源消耗和负载均衡分布为目标,使得资源消耗最小同时负载均衡分布,从而降低网路拥塞的发生。仿真证明该算法具有一定的优越性。 展开更多
关键词 网络拥塞 路由优化 遗传算法
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A hybrid dynamic programming-rule based algorithm for real-time energy optimization of plug-in hybrid electric bus 被引量:21
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作者 ZHANG Ya Hui JIAO Xiao Hong +3 位作者 LI Liang YANG Chao ZHANG Li Peng SONG Jian 《Science China(Technological Sciences)》 SCIE EI CAS 2014年第12期2542-2550,共9页
The optimization of the control strategy of a plug-in hybrid electric bus(PHEB) for the repeatedly driven bus route is a key technique to improve the fuel economy. The widely used rule-based(RB) control strategy is la... The optimization of the control strategy of a plug-in hybrid electric bus(PHEB) for the repeatedly driven bus route is a key technique to improve the fuel economy. The widely used rule-based(RB) control strategy is lacking in the global optimization property, while the global optimization algorithms have an unacceptable computation complexity for real-time application. Therefore, a novel hybrid dynamic programming-rule based(DPRB) algorithm is brought forward to solve the global energy optimization problem in a real-time controller of PHEB. Firstly, a control grid is built up for a given typical city bus route, according to the station locations and discrete levels of battery state of charge(SOC). Moreover, the decision variables for the energy optimization at each point of the control grid might be deduced from an off-line dynamic programming(DP) with the historical running information of the driving cycle. Meanwhile, the genetic algorithm(GA) is adopted to replace the quantization process of DP permissible control set to reduce the computation burden. Secondly, with the optimized decision variables as control parameters according to the position and battery SOC of a PHEB, a RB control is used as an implementable controller for the energy management. Simulation results demonstrate that the proposed DPRB might distribute electric energy more reasonably throughout the bus route, compared with the optimized RB. The proposed hybrid algorithm might give a practicable solution, which is a tradeoff between the applicability of RB and the global optimization property of DP. 展开更多
关键词 plug-in hybrid electric bus (PHEB) control strategy optimization dynamic programming (DP) genetic algorithm (GA) city bus route
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基于细菌趋药性优化的QoS组播路由算法
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作者 黄勇 《计算机应用与软件》 CSCD 北大核心 2012年第11期269-271,共3页
引进细菌趋药性算法(BCO),用于QoS组播路由问题。BCO是一种新型的对细菌觅食行为进行模拟的优化算法。对不同节点的网络结构图进行仿真,表明在同等条件下,BCO收敛时间低于流行的和谐搜索(HS),人工免疫遗传算法(AIGA)等算法。节点规模越... 引进细菌趋药性算法(BCO),用于QoS组播路由问题。BCO是一种新型的对细菌觅食行为进行模拟的优化算法。对不同节点的网络结构图进行仿真,表明在同等条件下,BCO收敛时间低于流行的和谐搜索(HS),人工免疫遗传算法(AIGA)等算法。节点规模越大,优势越明显。当节点规模高达60时,BCO消耗时间仅有HS的35%,AIGA的42.5%。 展开更多
关键词 QOS组播路由 细菌趋药性优化 和谐搜索 人工免疫遗传算法
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