Linear alternator

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A Linear alternator is essentially a linear motor used as an electrical generator. (An alternator is a type of alternating current (AC) electrical generator.) The devices are often physically equivalent. The principal difference is in how they are used and which direction the energy flows. An alternator converts mechanical energy to electrical energy, whereas a motor converts electrical energy to mechanical energy. Like most electric motors and electric generators, the linear alternator works by the principle of electromagnetic induction. However, most alternators work with rotary motion, whereas "linear" alternators work with "linear" motion (i.e. motion in a straight line).

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[edit] Theory

When a magnet moves in relation to a coil of wire, this changes the magnetic flux passing through the coil, and thus induces the flow of an electric current, which can be used to do work. A linear alternator is most commonly used to convert reciprocating (i.e. back-and-forth) motion directly into electrical energy. This short-cut eliminates the need for a crank or linkage that would otherwise be required to convert a reciprocating motion to a rotary motion in order to be compatible with a rotary generator.

[edit] Applications

The simplest type of linear alternator is the Faraday Flashlight. This is a torch (UK) or flashlight (USA) which contains a coil and a permanent magnet. When the appliance is shaken back and forth, the magnet oscillates through the coil and induces an electric current. This current is used to charge a capacitor, thus storing energy for later use. The appliance can then produce light, usually from a light-emitting diode, until the capacitor is discharged. It can then be re-charged by further shaking.

Other devices are under development which use linear alternators to generate electricity; these devices include the opposed-piston free-piston engine, known as the Stelzer engine, and the free-piston Stirling engine.

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