Warpspeed
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Yes you are quite right.If you are in a 50 Hz system, you could push your luck a little and switch at 450 Hz....going higher than that does not really accomplish much and the losses start to increase.
This is probably more efficient than high frequency, because the hard switching is done at very low frequencies, so switching losses will be vastly lower. Not a big point, but every bit helps.Voltage steps require a variable voltage divider that has current through it all the time that wastes power.
What I have is an ancient Hewlett Packard distortion analyzer. It measures total THD, and there is an output of the residual after a pure fundamental frequency has been subtracted.Good luck with your project, I'm glad it is working fine.
Do you have a scope that does FFTs or a good power analyzer?
It can help you visualize the individual harmonics, and focus to minimize the ones I mentioned.
I had considered using four stacked toroids with individual primaries, and one secondary around the whole lot.Adding and subtracting small increments to build the wave shape is one option, another, which requires careful transformer design is to use multiple primaries on a single transformer. Consider the simplest arrangement of two primaries, call them A and B:
1. Both windings are 'off'
2. Current is switched through winding A
3. Current is switched through winding B
4. Winding A is turned off
5. Winding B is turned off.
So at steps 1 and 5 there is no current, at steps 2 and 4 there is 1x current and at step 3 there is 2x current, giving a stepped up and down waveform rather than a square wave. The principle can be expanded so more windings overlap to create more steps. It has the advantage that each winding and it's driver circuit has approximately the same duty cycle.
Brian.
Schematic easy.You have practically done it. Are you going to share schematic and programing code?
Are you going to share schematic and programing code?
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