Attitude control

Attitude control is controlling the orientation of an object with respect to an inertial frame of reference or another entity like the celestial sphere , certain fields, and nearby objects, etc.

Page Revisions

Year Metadata Sections Top Words First Paragraph
2018

74489 characters

27 sections

39 paragraphs

7 images

114 internal links

10 external links

1. Introduction

2. Geometry

3. Sensors

4. Algorithms

5. Actuators

6. See also

7. References

attitude 0.384

k_ 0.315

control 0.288

actuators 0.169

text 0.157

displaystyle 0.155

gyro 0.133

damper 0.131

axis 0.130

torque 0.124

spin 0.121

magnetic 0.120

t_ 0.118

momentum 0.118

orientation 0.117

Attitude control is controlling the orientation of an object with respect to an inertial frame of reference or another entity like the celestial sphere , certain fields, and nearby objects, etc.

2017

74038 characters

27 sections

39 paragraphs

7 images

112 internal links

10 external links

1. Introduction

2. Geometry

3. Sensors

4. Algorithms

5. Actuators

6. See also

7. References

attitude 0.384

k_ 0.315

control 0.288

actuators 0.169

text 0.157

displaystyle 0.155

gyro 0.133

damper 0.131

axis 0.130

torque 0.124

spin 0.121

magnetic 0.121

t_ 0.119

momentum 0.118

orientation 0.117

Attitude control is controlling the orientation of an object with respect to an inertial frame of reference or another entity (the celestial sphere , certain fields, nearby objects, etc.).

2016

73697 characters

27 sections

39 paragraphs

7 images

112 internal links

10 external links

1. Introduction

2. Geometry

3. Sensors

4. Algorithms

5. Actuators

6. See also

7. References

attitude 0.384

k_ 0.315

control 0.288

actuators 0.169

text 0.157

displaystyle 0.155

gyro 0.133

damper 0.131

axis 0.130

torque 0.124

spin 0.121

magnetic 0.121

t_ 0.119

momentum 0.118

orientation 0.117

Attitude control is controlling the orientation of an object with respect to an inertial frame of reference or another entity (the celestial sphere , certain fields, nearby objects, etc.).

2015

58244 characters

27 sections

28 paragraphs

7 images

105 internal links

10 external links

1. Introduction

2. Geometry

3. Sensors

4. Algorithms

5. Actuators

6. See also

7. References

attitude 0.403

control 0.260

axis 0.184

gyro 0.170

spin 0.168

damper 0.167

orientation 0.149

sensor 0.142

thrusters 0.136

actuators 0.135

vehicle 0.132

stabilization 0.126

sensors 0.125

spacecraft 0.124

algorithms 0.121

Attitude control is controlling the orientation of an object with respect to an inertial frame of reference or another entity (the celestial sphere , certain fields, nearby objects, etc.).

2014

60214 characters

27 sections

29 paragraphs

6 images

117 internal links

9 external links

1. Introduction

2. Geometry

3. Sensors

4. Algorithms

5. Actuators

6. See also

7. References

attitude 0.401

control 0.250

axis 0.177

gyro 0.163

spin 0.161

damper 0.161

orientation 0.156

thrusters 0.145

spacecraft 0.138

sensor 0.137

actuators 0.129

vehicle 0.127

stabilization 0.121

sensors 0.120

algorithms 0.117

Attitude control is controlling the orientation of an object with respect to an inertial frame of reference or another entity (the celestial sphere , certain fields, nearby objects, etc.).

2013

55962 characters

25 sections

22 paragraphs

5 images

108 internal links

9 external links

1. Introduction

2. Geometry

3. Sensors

4. Algorithms

5. Actuators

6. See also

7. References

attitude 0.417

spin 0.186

stabilization 0.177

spacecraft 0.174

sensor 0.172

gyro 0.171

thrusters 0.164

control 0.151

algorithms 0.146

sensors 0.134

wheels 0.133

actuators 0.130

maneuvers 0.130

momentum 0.121

articulation 0.121

Attitude control is the exercise of control over the orientation of an object with respect to an inertial frame of reference or another entity (the celestial sphere , certain fields, nearby objects, etc.).

2012

39622 characters

23 sections

14 paragraphs

0 images

81 internal links

8 external links

1. Sensors

2. Algorithms

3. Actuators

4. See also

5. References

attitude 0.411

sensor 0.254

gyro 0.252

algorithms 0.217

sensors 0.199

actuators 0.192

star 0.178

senses 0.173

sense 0.159

orientation 0.133

control 0.121

gyrocompass 0.119

oscillation 0.114

tracker 0.106

desired 0.105

Attitude control is the exercise of control over the orientation of an object with respect to an inertial frame of reference or another entity (the celestial sphere , certain fields, nearby objects, etc.).

2011

37913 characters

23 sections

14 paragraphs

1 images

84 internal links

5 external links

1. Sensors

2. Algorithms

3. Actuators

4. See also

5. References

attitude 0.410

sensor 0.253

gyro 0.251

algorithms 0.216

sensors 0.198

actuators 0.191

star 0.177

senses 0.173

sense 0.158

orientation 0.133

control 0.120

gyrocompass 0.119

citation 0.114

oscillation 0.114

tracker 0.106

Attitude control is the exercise of control over the orientation of an object with respect to an inertial frame of reference or another entity (the celestial sphere , certain fields, nearby objects, etc.).

2010

919 characters

0 sections

1 paragraphs

0 images

1 internal links

0 external links

redirect 1.000

2007

922 characters

0 sections

1 paragraphs

0 images

1 internal links

0 external links

redirect 1.000

2006

13819 characters

5 sections

4 paragraphs

0 images

30 internal links

1 external links

1. Sensors

2. Algorithms

3. Actuators

4. See also

5. External link

attitude 0.482

algorithms 0.406

control 0.269

sensors 0.233

commands 0.186

translate 0.139

yaw 0.139

torques 0.135

trackers 0.132

nonlinear 0.132

algorithm 0.126

gyroscopes 0.126

pitch 0.114

spacecraft 0.111

desired 0.109

In the context of spacecraft , attitude control is control of the angular position and rotation of the spacecraft, either relative to the object that it is orbiting, or relative to the celestial sphere .

2005

10609 characters

4 sections

4 paragraphs

0 images

19 internal links

0 external links

1. Sensors

2. Algorithms

3. Actuators

4. See also

efficient 0.278

position 0.263

control 0.254

attitude 0.253

adjusting 0.227

yaw 0.219

actuator 0.219

algorithms 0.213

movement 0.200

calculating 0.198

algorithm 0.198

pitch 0.179

desired 0.172

roll 0.172

rotate 0.150

In the context of spacecraft , attitude control is control of the angular position and rotation of the spacecraft, either relative to the object that it is orbiting, or relative to the celestial sphere .

2004

6982 characters

3 sections

6 paragraphs

0 images

14 internal links

0 external links

1. Sensors

2. Algorithms

3. Actuators

sensor 0.389

position 0.307

photocell 0.206

efficient 0.195

control 0.178

attitude 0.177

shades 0.165

sirius 0.159

adjusting 0.159

actuator 0.154

algorithms 0.149

sees 0.145

movement 0.140

calculating 0.139

algorithm 0.139

In the context of spacecraft , attitude control is control of the angular position and rotation of the spacecraft, either relative to the object that it is orbiting, or relative to the celestial sphere .

2003

6138 characters

0 sections

7 paragraphs

0 images

13 internal links

0 external links

sensor 0.360

position 0.284

algorithms 0.276

photocell 0.190

efficient 0.180

control 0.165

attitude 0.164

celestial 0.160

sensors 0.158

actuators 0.153

shades 0.153

sirius 0.147

adjusting 0.147

actuator 0.142

sees 0.135

In the context of spacecraft , attitude control is control of the angular position and rotation of the spacecraft, either relative to the object that it is orbiting, or relative to the celestial sphere .

2002

1346 characters

0 sections

2 paragraphs

0 images

4 internal links

0 external links

attitude 0.494

control 0.331

controlling 0.317

relative 0.286

sphere 0.248

celestial 0.241

refers 0.236

maintained 0.231

angular 0.228

context 0.210

rotation 0.187

position 0.171

spacecraft 0.170

object 0.160

orbiting 0.145

In the context of spacecraft , attitude control refers to controlling the angular position and rotation of the spacecraft, either relative to the object that it is orbiting, or relative to the celestial sphere .