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Patent

Pulse width modulation inverter with battery charger

TLDR
In this article, a microprocessor-based circuit controls the inverter using pulse width modulation techniques, where both edges of each pulse of a carrier pulse train are equally modulated by a time proportional to sin θ, where θ is the angular displacement of the pulse center at the stator frequency from a fixed reference point on the carrier waveform.
Abstract
An inverter is connected between a source of DC power and a three-phase AC induction motor, and a microprocessor-based circuit controls the inverter using pulse width modulation techniques. In the disclosed method of pulse width modulation, both edges of each pulse of a carrier pulse train are equally modulated by a time proportional to sin θ, where θ is the angular displacement of the pulse center at the motor stator frequency from a fixed reference point on the carrier waveform. The carrier waveform frequency is a multiple of the motor stator frequency. The modulated pulse train is then applied to each of the motor phase inputs with respective phase shifts of 120° at the stator frequency. Switching control commands for electronic switches in the inverter are stored in a random access memory (RAM) and the locations of the RAM are successively read out in a cyclic manner, each bit of a given RAM location controlling a respective phase input of the motor. The DC power source preferably comprises rechargeable batteries and all but one of the electronic switches in the inverter can be disabled, the remaining electronic switch being part of a "flyback" DC-DC converter circuit for recharging the battery.

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Citations
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References
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Patent

Commutating circuit for electrical vehicle

W Rippel
TL;DR: In this paper, the main SCRs are alternately rendered conductive and thereafter non-conductive by connecting the capacitor to the conducting main SCR via a pair of commutating SCRs to back-bias the conducting SCR and produce an output signal in which all odd mode harmonics are eliminated, while the even mode harmonic coefficients are significantly reduced.
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Dual oscillator charger-inverter circuit

Zoltan Vital, +1 more
TL;DR: In this article, a dual converter between the battery, the load and the power source is presented, with a plurality of winding wound on the core, with at least one of the winding being common to both converters.