Title: Spacecraft Attitude Control and Intro to Space Power
1 Spacecraft Attitude Controland Intro to Space
Power
2Agenda
- Angular Momentum
- Spinning satellites
- Active Attitude Control
- Space Power
- Homework 4
3Angular momentum
- A satellite is a rigid body with an angular
momentum H ?I (mivixri)M VCMx r - Satellite has both internal ( about CM -Center of
Mass) and external motion components of angular
momentum - Internal angular momentum and its changes
determine attitude control - Internal angular momentum is changed by torques
4Moment of Inertia
5Spinning satellites
H
Some satellite simply spin like gyroscopes to
maintain attitude and control precession to
control it
6Attitude Control Tools
- Reaction control jets
- Magnetic torquers
- Reaction wheels
7Key Equations
8Momentum Wheels
Many satellites use momentum wheels to control
attitude
9Momentum Wheels
N
S
Magnetic field
Many satellites use on board magnetic torque
rods to maintain attitude and control it
10Key Equations
11Momentum Dump
Momentum wheels
Desired range
Rotation frequency
12Momentum Dump
Satellites dump angular momentum by torquing the
momentum wheels and firing control thrusters to
produce an opposing torque
13Celestial Sphere
14Clementine
Clementine used full attitude determination and
control since it the spacecraft was made to
gather imaging data and all cameras were bolted
to the spacecraft frame
15Star tracker algorithm
Algorithm drew 100s of triangles among stars and
compared lengths of sides to table values to find
constellations
16Clementine Image of Earth Over Moon
Clementine achieved high camera pointing accuracy
due to good attitude control Attitude control is
vital to mission success in space as well as life
17Overshoot and correction
18Space Power Systems
19Agenda
- Space Power Systems Overview
- Batteries
- Solar Power
- Radioisotope Thermal Generators RTGs
- Fuel cells
- Auxiliary Power Units
- Space Nuclear power
20Batteries
- Nickel Cadmium
- Very Rechargeable
- Mature technology
- Nickel Hydrogen
- New
- Very Rechargeable
- Good Discharge Recovery
21Batteries
- Lead Acid
- Very Rechargeable
- Mature technology
- Heavy
- Lithium
- High energy
- Light
- Zinc Silver
- Very High Current
22Battery Comparison
23Nickel Hydrogen Battery
24Primary Power Sources
Inner planets Solar Panels
Outer planets RTGs
25Solar System
26Solar Batteries
- Oldest Source of Continual Power in Space
- 100W/ meter2
- Silicon
- Low Efficiency10
- Radiation Sensitive
- Low cost
- Gallium Arsenide GaAs
- Efficient20
- Radiation Insensitive
- Costly
27Solar Batteries
28Orbits Radiation Belts
Solar batteries are degraded by radiation in the
van Allen Belts and so must be either hardened or
kept out of van Allen penetrating orbits
29Radiation Degradation of Solar Battery Material
30Orbits Eclipse Duration
31Homework 4
- 1. (30 points)Use the equation for angular
momentum conservation to calculate the of
rotations a reaction wheel of 1cm thickness and
10 cm diameter and mass 10 grams must turn in
order to rotate a 1ton 1meter diameter 1meter
long satellite through 30degrees. - 2.(30points) How much battery mass at 40Whr/kg ,
assuming 50 power margin, for a satellite in
tight orbit around Phobos , the inner Moon of
Mars, using 100W continuously ( assume spherical
Phobos at 1.9gm/cc density) - 3. (30points) How much solar panel area do we
need for this probe to operate in low mars orbit
with a 50 power margin.