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Leakage inductance
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Leakage inductance : ウィキペディア英語版
Leakage inductance
Leakage inductance derives from the electrical property of an imperfectly-coupled transformer whereby each winding behaves as a self-inductance constant in series with the winding's respective ohmic resistance constant, these four winding constants also interacting with the transformer's mutual inductance constant. The winding self-inductance constant and associated leakage inductance is due to leakage flux not linking with all turns of each imperfectly-coupled winding.
The leakage flux alternately stores and discharges magnetic energy with each electrical cycle acting as an inductor in series with each of the primary and secondary circuits.
Leakage inductance depends on the geometry of the core and the windings. Voltage drop across the leakage reactance results in often undesirable supply regulation with varying transformer load. But it can also be useful for harmonic isolation (attenuating higher frequencies) of some loads.
Although discussed exclusively in relation to transformers in this article, leakage inductance applies to any imperfectly-coupled magnetic circuit device including especially motors.〔Pyrhönen〕
==Leakage inductance and coupling coefficient==

The magnetic circuit's flux that does not interlink both windings is the leakage flux corresponding to primary leakage inductance LPσ and secondary leakage inductance LSσ. These leakage inductances are defined in terms of transformer winding open-circuit inductances as well as the transformer's coupling coefficient k, the primary open-circuit self-inductance being given by
::L_^=L_P=L_P^\sigma+L_M
where
::L_P^\sigma=L_P\cdot
::L_M=L_P\cdot
and
::L_^ = Primary inductance
::L_P = Primary self-inductance
::L_P^\sigma = Primary leakage inductance
::L_M = Magnetizing inductance referred to the primary
It therefore follows that the transformer secondary open-circuit self, magnetizing and leakage inductances are given by
::L_^=L_S=L_S^\sigma+L_M
where
::L_S^\sigma=L_S\cdot
::L_M=L_S\cdot
and
::L_^ = Secondary inductance
::L_S = Secondary self-inductance
::L_S^\sigma = Secondary leakage inductance
::\frac = Magnetizing inductance referred to the secondary
::a = Winding turns ratio.
The electric validity of the above transformer diagram depends strictly on open circuit conditions for the respective winding inductances considered, more generalized circuit conditions being as developed in the next two sections.

抄文引用元・出典: フリー百科事典『 ウィキペディア(Wikipedia)
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