While the field and future direction of electrification is fairly
well outlined and its future is assured, yet this future will be
one of steady progress rather than one of sudden upheaval for the
economic reasons before stated. To-day there are no final
standards either of systems or of motors and the field is open for
the final evolution of the most efficient methods. Notwithstanding
the extraordinary progress that has been made many further
developments are not only possible now but will be demanded with
the progress of the art.
The great problem of the electric railway is the transmission of
energy, and while power may be economically generated at the
central station, yet, as Mr. Frank J. Sprague, one of the pioneers
and foremost workers in the electrical engineering of railways has
so aptly said, it is still at that central station and it will
suffer a certain diminution in being carried to the point of
utilization as well as in being transformed into power to move
locomotives, so that these two considerations lie at the bottom of
the electric railway and on them depend the choice of the system
and the design and construction of the motor. The two fundamental
systems for electric railways, as in other power problems, are the
direct current and the alternating current. In the former we have
the familiar trolley wire, fed perhaps by auxiliary conductors
carried on the supporting poles or the underground trolley in the
conduit, or the third rail laid at the side of the track. All of
these have become standard practice and are operated at the usual
voltage of from 500 to 600 volts. The current on lines of any
considerable length is alternating current, supplied from large
central generating stations and transformed to direct as occasion
may demand at suitable sub-stations. Recently there has been a
tendency to employ high voltage direct current systems where the
advantages of the use of direct current motors are combined with
the economies of high voltage transmission, chief of which are the
avoiding of power losses in transmission and the economy in the
first cost of copper. These high voltage direct current lines were
first used in Europe, and during the year 1907 experimental lines
on the Vienna railway were tested. IN Germany and Switzerland
tests were made of direct current system of 2,000 and 3,000 volts
and in 1908 there was completed the first section of a 1,200-volt
direct current line between Indianapolis and Louisville, which
marked the first use of high tension direct current in the United
States, and this was followed by other successful installations.
Public-domain text, read in full here on John Shaqi.
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