Abridgment of electric transmission and control of power from internal combustion engines for transportation

S. T. Dodd
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Abstract

With large internal combustion power plants in transportion service the use of electric transmission is almost a necessity. Furthermore, the interposition of the electric transmission provides a method of obtaining what is the equivalent of a wide change in gear ratio, as well as a cushioning of the characteristic power impulses of the internal combustion engine. In adapting the internal combustion engine to this character of service there has been a number of problems, such as fitting the generator to the engine curve, the question of hand or automatic control, field control arrangements, single vs. multiple motor drive, and arrangement and operation of auxiliaries. The use of the combination generator-battery power plant has recently received considerable attention. This application employs a battery operating in parallel with the engine generator power plant, capable of supplementing the power of the engine for short periods. The characteristics of the engine used in transportation service must be well adapted to the duty required. These characteristics vary somewhat with the size of the unit and the control of the engine throttle is usually adapted to the particular problem in hand. In this paper, the principal problems connected with the operation and design of complete engine generator units are discussed in detail and many typical schemes of connection are diagrammatically shown. No attempt is made to discuss the question of multiple power plant operation, although this would mean simply the addition of the necessary cross connections to operate the two power plants in parallel; unless, as is sometimes the case, the several power plants are operating independent of each other, each engine generator furnishing power to Us own motors. In general, there is given a fairly complete summary of the operation and design of this equipment as now used in American railway practise.
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运输用内燃机的电力传输和控制的简化
由于大型内燃机发电厂在运输服务中使用电力传动几乎是必要的。此外,电动传动的插入提供了一种方法,可以获得相当于齿轮传动比的大变化,以及内燃机的特征功率脉冲的缓冲。在使内燃机适应这种服务特性的过程中,存在许多问题,例如将发电机与发动机曲线相匹配,手动或自动控制的问题,现场控制安排,单电机与多电机驱动以及辅助设备的安排和操作。发电机-蓄电池联合发电装置的使用最近受到了相当大的关注。这种应用采用与发动机发电机发电厂并联运行的电池,能够在短时间内补充发动机的功率。在运输服务中使用的发动机的特性必须很好地适应所需的任务。这些特性随着机组的大小而有所不同,发动机油门的控制通常适应于手头的特定问题。本文详细讨论了发电机组整机运行和设计中的主要问题,并给出了许多典型的接线方案。没有试图讨论多个发电厂运行的问题,尽管这将意味着简单地增加必要的交叉连接,使两个发电厂并行运行;除非像有时的情况那样,几个发电厂彼此独立运行,每台发动机发电机为我们自己的电动机提供动力。总的来说,对这种设备的操作和设计给出了一个相当完整的总结,这种设备现在在美国铁路上使用。
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