In all these forms the principle is generally adhered to, that the
magnetic resistance and the exciting power possess for each part of the
length of the magnetic circuit the same value, and thus the formation
of poles with the resulting dispersion of the lines of force is avoided.
[Illustration: FIG. 24.]
This system procured for itself universal recognition, but especially
in the Budapest Exhibition. There several exhibits within a radius
of 1,300 metres were lit from a common central station. The several
circuits were quite independent of one another, and lamps could be
extinguished or lit in any one of them without anywhere producing a
change in the intensity of the light, which could be perceived.
[Illustration: FIG. 25.]
[Illustration: FIG. 26.]
[Illustration: FIG. 27.]
[Illustration: FIG. 28.]
[Illustration: FIG. 29.]
It was, therefore, in the year 1885 that the problem of current
distribution by means of transformers was solved in a truly practical
manner. The ideas which led the inventors to this thoroughly successful
solution were then so unknown to practical and theoretical electricians,
that it was long ere they were understood and appreciated. Even in
February, 1886, such an electrician as Prof. Forbes maintained in
his Cantor Lectures that the parallel connection of transformers was
quite impracticable. He believed, namely, that a connection such as
shown in Fig. 29 was useless, because the difference of potential
at the generator diminished from the machine outwards, but that a
connection such as shown in Fig. 30 must be used. According to him,
in a direct system of distribution each lamp should have a separate
lead, and having regard to the great number of leads which would thus
be necessary, he concluded that the series method of connection was the
right one. One would suppose that Prof. Forbes was not aware of the
weighty disadvantages of this method. However, that was not the case.
He proposed, that with series connection the strength of current should
be kept constant, and that each transformer should have an especial
regulating apparatus—the raising or lowering of the core; which, by the
way, is an arrangement impracticable in a well designed transformer.
Such a regulating apparatus has lately been made automatic.
[Illustration: FIG. 30.]
“This is,” says Prof. Forbes, “the last triumph, which after a series
of troublesome experiments has brought us year after year nearer to the
solution of the difficulties.” “I am not in a position to explain here
the _modus operandi_,” he says further, “but I have seen the apparatus
working very satisfactorily.”
[Illustration: FIG. 31.]
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