Optimization of diesel engine - synchronous alternator group

G.F. Girda, A. Moosajee
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Abstract

The paper describes the findings of an experiment that is a result of close collaboration among four companies. The paper discusses the experiment on one locomotive by using a microprocessor-based relay, multiple function relay (MFR) SEL-701, for on-line measurement, control and optimization of a HEP (head end power) group. The HEP has a diesel engine, 810 HP/908 HP, 1800 rpm, and a double wound three-phase self-excited synchronous alternator, 625 kVA, 575 V. The HEP group is installed on the locomotive and supplies the electrical hotel power to the train's coaches. The relay SEL-701 (Schweitzer engineering laboratories) measures the diesel engine temperatures on 7 different points and the winding temperatures at 3 internal points, one per each phase. The SEL-701 monitors alternator output currents, voltages and controls one (or both) train lines when the diesel engine's hottest temperature equals the maximum admissible temperature. Amongst others the paper highlights the benefits derived by use of on-line measurements of the diesel engine before and after relocation of a pre-existent engine shutdown temperature probe. In addition, the paper discusses the decrease in the numbers of diesel engine shut downs due to the modified mode of protection and the increase in available electrical power supplied to the train lines together with the comparison of the HEP group efficiency before and after modification.
柴油机-同步交流发电机机组优化
这篇论文描述了一个实验的结果,这个实验是四家公司密切合作的结果。本文讨论了利用单片机继电器SEL-701多功能继电器(MFR)对机车车头端功率组进行在线测量、控制和优化的实验。HEP有一台柴油发动机,810马力/908马力,1800转,和一个双绕组三相自激同步交流发电机,625千伏安,575伏。高效能组安装在机车上,为列车车厢提供电力。继电器SEL-701 (Schweitzer工程实验室)测量柴油发动机在7个不同点的温度和绕组在3个内部点的温度,每个阶段一个。SEL-701监测交流发电机输出电流,电压,并控制一条(或两条)列车线路,当柴油机的最高温度等于最高允许温度。除此之外,本文还强调了在重新安置预先存在的发动机停机温度探头之前和之后使用柴油发动机在线测量所带来的好处。此外,本文还讨论了改进后的保护方式减少了柴油机的停机次数,增加了供给列车线路的可用电力,并对改进前后的HEP组效率进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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