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- #21
Lauri Kettunen
Well-known member
Are you thinking specifically about an "A" system or a "B" system in reference to the link and description above?
Cliff, I'm thinking of an "A" system, i.e., an electrically stabilized system. The goal is a rock-steady system. Constantine has a different approach, which is based on mechanical gyros.
We've discussed with Gilles by email. He has given a lot of useful feedback. I told him earlier today that my engineering intuition suggests that this kind of "A" system does not need to be astronomically expensive. Instead I feel strongly that it should be possible to do the same for gyrostabilizers what Red Digital Cinema has done to the prices of cinema cameras.
The crucial issue is --I preserve the right to change my opinion, if/when find that have made a mistake-- if
1) the gravity center of the camera is precisely the point where the three rotation axes intersect,
2) air drag is not taken into account (in practice, it's a good idea to have a spherical cover around the system)
3) there is no friction in the system (in practice, in the bearings),
then there is no torque that rotated the camera although the 3-axis supporting frame around the camera rotates. In other words, if there is no friction, there is neither forces that rotated the camera. This relies on the basic idea of inertia; if no forces apply, the object remains on its state of motion.
Of course, when the whole supporting 3-axes frame accelerates or deaccelerates, a force acts on the camera as well. But (right now I think) as this force acts on the center of gravity and if the center of gravity is the intersection of the three rotation axes, there simply can't be any torque.
Now, if I'm not mistaken here, all this implies the design should start from the idea of not introducing big motors and gears etc., as then one ends up with compensating mainly the torques generated by the very same motors. Instead, the design goal should be to minimize friction and then to control the rotation due to friction with a kind of 'bended linear motor' that acts the force directly on the frame that should be rotated.
I'm just thinking out loud and have not yet analysed these thoughts in detail. So, feel free to shoot down all mistakes and don't feel guilty to enjoy it!