You guys are awesome! Keep the suggestions coming.
Right now the plan is to parallel at least 10 of these together for our final prototype so our total output current that goes to the battery will be more than what we have right now.
Just a question about our voltage and current measurements, though. When we are measuring the voltage and current of a single coil, we connect the multimeter to both of the open-circuited coil ends and measure both the AC voltage and AC current in that position. So it seems like we are measuring the open circuit voltage and the short circuit current produced by the coil. If we connect this coil to a 1.5V battery (after rectification), will our current going into the battery be much less than the short circuit current we measured with the multimeter?
Another question. Assume we take the AC output from the generator, rectify it, and then send it to the battery. Where does the linear wire resistance (ohms/meter) of the coil come into play during this process? Looking at my attached image of the simple circuit diagram, is R_s the resistance of the coil (all ~100ft of wire in the coil) or is it something else?
Regarding the design of the generator itself, I think there are some improvements we can make. We found out last week that our belt can withstand larger magnets so we will be testing those out later today to see how much our output improves.
Our magnetic circuit may be as good as we can make it right now. As you can see in the attached photos, we have tried to improve the magnetic circuit by attached a small spring to the underside of the belt along with a small magnet hanging from the spring. The magnet hangs into a cylindrical coil so it is always inside the coil with a very small air gap while it is moving. If we make the air gap any smaller, I am afraid that the magnet may start rubbing the inside of the tube while it is moving and impede its motion. Additionally, we have to wind the coil around something (a very thin plastic tube in our case) and finding something just barely smaller might be difficult. We thought about doing some sort of iron core but we realized that the main advantage of the windbelt is that it is dirt cheap. Adding iron to each coil would increase the cost and, unless the gains were quite significant, the power/$ ratio would probably decrease. We are still trying to optimize the generator by testing magnet placement and other variables. For the windbelt Shawn Frayne was using in his video, he was only able to generate 40mW with 10 MPH winds. We are using 8 MPH for our testing.