为了配合锂离子电池在无轨电车上的应用,提出了一种针对无轨电车运行环境的锂电池管理系统,能够对车载电池进行故障诊断、分级报警和优化充电.本文主要分析了无轨电车环境下电池运行模式的特点,针对原有铅酸电池的使用和管理问题,提出...为了配合锂离子电池在无轨电车上的应用,提出了一种针对无轨电车运行环境的锂电池管理系统,能够对车载电池进行故障诊断、分级报警和优化充电.本文主要分析了无轨电车环境下电池运行模式的特点,针对原有铅酸电池的使用和管理问题,提出了更加优化合理的锂离子电池使用方法和控制策略,就电池的故障分级、电池荷电状态(SOC:State of Charge)估算、电池有效利用容量区间、充电电流的计算方法进行了深入研究,提出了多种特殊处理方法,较好配合了锂离子电池在无轨电车上的安全高效使用.展开更多
The effect of line voltage drop is considered larger on loads, especially on asynchronous motor, transformers and other non-linear load parameters in power system of large ships. A novel power flow method based on imp...The effect of line voltage drop is considered larger on loads, especially on asynchronous motor, transformers and other non-linear load parameters in power system of large ships. A novel power flow method based on improved node voltage method is proposed, and a typical ship power system, which has 2 power stations and 10 nodes, with closed-loop design but open-loop operation, is taken as an example. Simulation results show that the improved power flow calculation method has achieved higher accuracy and better convergence.展开更多
文摘为了配合锂离子电池在无轨电车上的应用,提出了一种针对无轨电车运行环境的锂电池管理系统,能够对车载电池进行故障诊断、分级报警和优化充电.本文主要分析了无轨电车环境下电池运行模式的特点,针对原有铅酸电池的使用和管理问题,提出了更加优化合理的锂离子电池使用方法和控制策略,就电池的故障分级、电池荷电状态(SOC:State of Charge)估算、电池有效利用容量区间、充电电流的计算方法进行了深入研究,提出了多种特殊处理方法,较好配合了锂离子电池在无轨电车上的安全高效使用.
基金Supported by the National Natural Science Foundation under Grant No. 60704004
文摘The effect of line voltage drop is considered larger on loads, especially on asynchronous motor, transformers and other non-linear load parameters in power system of large ships. A novel power flow method based on improved node voltage method is proposed, and a typical ship power system, which has 2 power stations and 10 nodes, with closed-loop design but open-loop operation, is taken as an example. Simulation results show that the improved power flow calculation method has achieved higher accuracy and better convergence.