6 ms·
One of those values is "ISS total mass." Is that calculated using launch/deorbit weights or is there some kind of sensor on board that can measure that? I figur
by Bnichs 3y ago
One of those values is "ISS total mass." Is that calculated using launch/deorbit weights or is there some kind of sensor on board that can measure that? I figure if you did a specific type of burn you could calculate the weight from that, but I'm wondering if they have something more clever.
- orbital-decay 3y agoIt's just an estimate and isn't that accurate. Yes, the closest you can get is orbit determination before and after the reboosts, and acceleration data.
- webdoodle 3y agoThe ISS uses Control moment gyroscopes to stabilize it's orientation. Couldn't those be used to calculate its mass? https://en.wikipedia.org/wiki/Control_moment_gyroscope#International_Space_Station https://en.wikipedia.org/wiki/Control_moment_gyroscope#Inter...
- dr_orpheus 3y agoNot its mass directly, but you can use it to calculate the moment of inertia. Move the CMGs a fixed angle and looking at the responding change in rate of the ISS. Mass can be determined from maneuvers when you fire the thrusters. Assuming you know the force from the thrusters very well (this has its own errors) you can look at the acceleration from the orbit determination before and after the thruster burns and back out the mass.
- Out_of_Characte 3y agoNot an expert but I think its possible, the problem is that the gyroscope alone wouldn't be sufficient. When the gyro rotates once, the massive spacecraft will obviously have rotated exactly once relative to the gyroscope. However if you could track the space station's rotation relative to an independend stationary observer in space (lets say an array of pulsar data), then you could count the amount of turns of both the gyro and the spacestation relative to the background of space. Then the amount of turns of the gyro times the mass of the gyro would give you the mass of the space station minus the independend floating objects. Meaning you'll need to add the mass of the gyro itself as well. Please correct me if i'm missing something obvious. This should work right?
- CoastalCoder 3y agoHopefully I'm not embarrassing myself with this question, but: If you know an satellite's orbital path and velocity, and the Earth's gravitational strength, is that enough to compute the satellite's mass?
- martincmartin 3y agoIn a uniform gravitational field, it isn't. On the earth's surface, acceleration due to gravity is 9.8 m/s^2, independent of the mass of the falling object. See Galileo's Leaning Tower of Pisa experiment. https://en.wikipedia.org/wiki/Galileo%27s_Leaning_Tower_of_Pisa_experiment https://en.wikipedia.org/wiki/Galileo%27s_Leaning_Tower_of_P...
- CoastalCoder 3y ago> Hopefully I'm not embarrassing myself with this question, but: Yup, I'm kind of embarrassed :) I forgot that maintaining orbit is just a matter of falling at the same pace that the earth is falling away from you.
- flainne 3y ago> maintaining orbit is just a matter of falling at the same pace that the earth is falling away from you Perhaps a better visualization: moving sideways fast enough that you miss the earth? :)
- mmh0000 3y agoIf you've never tried it, I highly recommend playing Kerbel Space Program[1] (it works on Linux, Mac, and Windows!). That game taught me so much about orbital mechanics, which led to rabbit holes of textbooks and videos[2]. The first big lesson KSP taught me was: why, when launching a rocket, you don't just go straight up but, instead, have to lean over pretty aggressively. [1] https://store.steampowered.com/app/220200/Kerbal_Space_Program/ https://store.steampowered.com/app/220200/Kerbal_Space_Progr... [2] https://www.youtube.com/watch?v=dhYqflvJMXc https://www.youtube.com/watch?v=dhYqflvJMXc
- deleted 3y ago
- pyrolux 3y agoThe mass data is calculated from all the launched mass but I have no idea why it's a telemetry value unless the ISS echoes it back for some reason
- Horffupolde 3y agoI assume it’s calculated from the propulsion positioning system.