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.).
Controlling vehicle attitude requires sensors to measure vehicle orientation, actuators to apply the torques needed to re-orient the vehicle to a desired attitude, and algorithms to command the actuators based on (1) sensor measurements of the current attitude and (2) specification of a desired attitude. The integrated field that studies the combination of sensors, actuators and algorithms is called "Guidance, Navigation and Control" (GNC).
Introduction
A spacecraft's attitude must typically be stabilized and controlled for a variety of reasons. It is oftentimes needed so that the spacecraft high-gain antenna may be accurately pointed to Earth for communications, so that onboard experiments may accomplish precise pointing for accurate collection and subsequent interpretation of data, so that the heating and cooling effects of sunlight and shadow may be used intelligently for thermal control, and also for guidance: short propulsive maneuvers must be executed in the right direction.
What is your need for attitude control, and how can you meet it? We talk about attitude control requirements from the extremely rigid to the very flexible, and what kinds of sensors should be employed to keep them in that attitude.
In this series of classes I will discuss the basics of satellite design. The goal is to understand all of the basic systems in satellites, to the point of having a starting point to build a satellite, such as a Cubesat. Feel free to talk with others working their way through on my discord, https://discord.gg/qnn4bmM , in the #satellite room.
For more information on what I am doing, see http://www.whereisroadster.com/ To help support this and future efforts see https://www.patreon.com/whereisroadster/. To see more information about Kerbal Space Program, visit ...
published: 09 Jun 2018
Satellite Attitude Control Design with MATLAB, Simulink, FlightGear - Aerospace Control Tutorial
Videos you'll find interesting!
Connecting Simulink to FlightGear: https://www.youtube.com/watch?v=jB-80cvV1Ao&t=646s
Import your own CAD designs into FlightGear: https://www.youtube.comD/watch?v=jB-80cvV1Ao&t=646s
Design an Autopilot in Simulink (For absolute beginners): https://www.youtube.com/watch?v=CJGlKCfGEA0&t=425s
Hey Everyone!
If you're an Engineering student with experience in MATLAB and interest in space, then this video is for you! I walk you through designing a controller for a Spacecraft Attitude Control System using MATLAB, Simulink. You can also design your own satellite and then import it into FlightGear to perform a visual simulation.
This video also covers control theory basics such as:
1) Laplace Transforms
2) Transfer Function
3) Bode Plot and Root Locus
4) Block...
published: 19 Jan 2019
ACS Attitude Control System from Mente Marine
Video describing the features of the new ACS Attitude Control System from Mente Marine
published: 12 Nov 2012
ISS Attitude Control - Torque Equilibrium Attitude and Control Moment Gyroscopes
Have you ever wondered how NASA and Roscosmos fly the International Space Station? Well, this is how! A lot goes into controlling the ISS and that's certainly true for its attitude control. In this video, I'll take a look at the LVLH reference frame, Torque Equilibrium Attitude, reaction wheels and Control Moment Gyroscopes (CMGs).
Thanks go to "Lunar Orbit" Patreon supporter MrKumquat
Consider supporting me on Patreon: https://www.patreon.com/simplyspace
You can join Simply Space on...
Reddit: https://www.reddit.com/r/SimplySpace/
Twitter: https://twitter.com/SimplySpace_YT
Facebook: https://www.facebook.com/simply.space.official/
#ISS #NASA
published: 06 Sep 2019
AEE462 Lecture15b - Attitude Determination and Control Systems (ADCS)
A brief introduction to navigation and control of spacecraft orientation. We focus on the various mechanisms for generating torque, including: Thrusters; Reaction Wheels; Control Moment Gyros (CMGs); Gravity Gradient; and Magnetic Torquers.
published: 21 Apr 2020
15 Ways To Improve Your Attitude
Discover 15 ways to improve your attitude! Attitude plays a big part in life, and it affects how things turn out in the future. You see, how we react to others and things, is mainly influenced by our perception and not the actual events or people. Because of this, when you have a negative attitude, you negatively impact everything around you!
Thankfully, by taking active steps to cultivate positivity, you can counteract and improve your attitude. You can turn a gloomy outlook into a more optimistic attitude! You are in control of your life and many of the negative situations and negative thoughts you have are influenced directly by you. By taking responsibility for your actions, you can begin to remove negativity from your life and instead create positivity.
Having a positive attitude do...
published: 22 Dec 2018
Satellite Magnetorquers
An explanation and analysis of Magnetorquers use in satellites and the ESAT Nanosatellite.
published: 10 Oct 2018
Spacecraft Attitude Control Detumble Simulation
This is another sneak peek of the upcoming spacecraft attitude control with python video series that I will be starting soon. I'm currently working through getting those software more robust, as well as posting videos on the numerical methods with python series.
Link to github for this channel:
https://github.com/alfonsogonzalez/AWP
This series is going to be a prerequisite to the spacecraft attitude control series, since I am covering rotation matrices, principal axis rotations, euler angles and quaternions in the numerical methods series. So be sure to check those videos out if you haven't already.
https://youtu.be/GnusqybgIGk
#spacecraftattitudecontrol #spacecraftdynamics #spacecraftgnc
What is your need for attitude control, and how can you meet it? We talk about attitude control requirements from the extremely rigid to the very flexible, and ...
What is your need for attitude control, and how can you meet it? We talk about attitude control requirements from the extremely rigid to the very flexible, and what kinds of sensors should be employed to keep them in that attitude.
In this series of classes I will discuss the basics of satellite design. The goal is to understand all of the basic systems in satellites, to the point of having a starting point to build a satellite, such as a Cubesat. Feel free to talk with others working their way through on my discord, https://discord.gg/qnn4bmM , in the #satellite room.
For more information on what I am doing, see http://www.whereisroadster.com/ To help support this and future efforts see https://www.patreon.com/whereisroadster/. To see more information about Kerbal Space Program, visit https://kerbalspaceprogram.com/ . To check out my store, see http://www.cafepress.com/whereisroadster/.
What is your need for attitude control, and how can you meet it? We talk about attitude control requirements from the extremely rigid to the very flexible, and what kinds of sensors should be employed to keep them in that attitude.
In this series of classes I will discuss the basics of satellite design. The goal is to understand all of the basic systems in satellites, to the point of having a starting point to build a satellite, such as a Cubesat. Feel free to talk with others working their way through on my discord, https://discord.gg/qnn4bmM , in the #satellite room.
For more information on what I am doing, see http://www.whereisroadster.com/ To help support this and future efforts see https://www.patreon.com/whereisroadster/. To see more information about Kerbal Space Program, visit https://kerbalspaceprogram.com/ . To check out my store, see http://www.cafepress.com/whereisroadster/.
Videos you'll find interesting!
Connecting Simulink to FlightGear: https://www.youtube.com/watch?v=jB-80cvV1Ao&t=646s
Import your own CAD designs into FlightGe...
Videos you'll find interesting!
Connecting Simulink to FlightGear: https://www.youtube.com/watch?v=jB-80cvV1Ao&t=646s
Import your own CAD designs into FlightGear: https://www.youtube.comD/watch?v=jB-80cvV1Ao&t=646s
Design an Autopilot in Simulink (For absolute beginners): https://www.youtube.com/watch?v=CJGlKCfGEA0&t=425s
Hey Everyone!
If you're an Engineering student with experience in MATLAB and interest in space, then this video is for you! I walk you through designing a controller for a Spacecraft Attitude Control System using MATLAB, Simulink. You can also design your own satellite and then import it into FlightGear to perform a visual simulation.
This video also covers control theory basics such as:
1) Laplace Transforms
2) Transfer Function
3) Bode Plot and Root Locus
4) Block Diagrams
5) PID Control (Proportional Integral Derivative)
6) Feedback Control Design
7) Tuning a control system
The MATLAB / Simulink topics covered are:
1) Simulink Animation
2) Aerospace Blockset
3) Working with FlightGear
Thanks for watching and make sure you subscribe for more videos like this!
Best wishes,
My Instagram: https://www.instagram.com/vinayak_desh/
My Website: https://www.vinayakd.com/
Videos you'll find interesting!
Connecting Simulink to FlightGear: https://www.youtube.com/watch?v=jB-80cvV1Ao&t=646s
Import your own CAD designs into FlightGear: https://www.youtube.comD/watch?v=jB-80cvV1Ao&t=646s
Design an Autopilot in Simulink (For absolute beginners): https://www.youtube.com/watch?v=CJGlKCfGEA0&t=425s
Hey Everyone!
If you're an Engineering student with experience in MATLAB and interest in space, then this video is for you! I walk you through designing a controller for a Spacecraft Attitude Control System using MATLAB, Simulink. You can also design your own satellite and then import it into FlightGear to perform a visual simulation.
This video also covers control theory basics such as:
1) Laplace Transforms
2) Transfer Function
3) Bode Plot and Root Locus
4) Block Diagrams
5) PID Control (Proportional Integral Derivative)
6) Feedback Control Design
7) Tuning a control system
The MATLAB / Simulink topics covered are:
1) Simulink Animation
2) Aerospace Blockset
3) Working with FlightGear
Thanks for watching and make sure you subscribe for more videos like this!
Best wishes,
My Instagram: https://www.instagram.com/vinayak_desh/
My Website: https://www.vinayakd.com/
Have you ever wondered how NASA and Roscosmos fly the International Space Station? Well, this is how! A lot goes into controlling the ISS and that's certainly t...
Have you ever wondered how NASA and Roscosmos fly the International Space Station? Well, this is how! A lot goes into controlling the ISS and that's certainly true for its attitude control. In this video, I'll take a look at the LVLH reference frame, Torque Equilibrium Attitude, reaction wheels and Control Moment Gyroscopes (CMGs).
Thanks go to "Lunar Orbit" Patreon supporter MrKumquat
Consider supporting me on Patreon: https://www.patreon.com/simplyspace
You can join Simply Space on...
Reddit: https://www.reddit.com/r/SimplySpace/
Twitter: https://twitter.com/SimplySpace_YT
Facebook: https://www.facebook.com/simply.space.official/
#ISS #NASA
Have you ever wondered how NASA and Roscosmos fly the International Space Station? Well, this is how! A lot goes into controlling the ISS and that's certainly true for its attitude control. In this video, I'll take a look at the LVLH reference frame, Torque Equilibrium Attitude, reaction wheels and Control Moment Gyroscopes (CMGs).
Thanks go to "Lunar Orbit" Patreon supporter MrKumquat
Consider supporting me on Patreon: https://www.patreon.com/simplyspace
You can join Simply Space on...
Reddit: https://www.reddit.com/r/SimplySpace/
Twitter: https://twitter.com/SimplySpace_YT
Facebook: https://www.facebook.com/simply.space.official/
#ISS #NASA
A brief introduction to navigation and control of spacecraft orientation. We focus on the various mechanisms for generating torque, including: Thrusters; Reacti...
A brief introduction to navigation and control of spacecraft orientation. We focus on the various mechanisms for generating torque, including: Thrusters; Reaction Wheels; Control Moment Gyros (CMGs); Gravity Gradient; and Magnetic Torquers.
A brief introduction to navigation and control of spacecraft orientation. We focus on the various mechanisms for generating torque, including: Thrusters; Reaction Wheels; Control Moment Gyros (CMGs); Gravity Gradient; and Magnetic Torquers.
Discover 15 ways to improve your attitude! Attitude plays a big part in life, and it affects how things turn out in the future. You see, how we react to others ...
Discover 15 ways to improve your attitude! Attitude plays a big part in life, and it affects how things turn out in the future. You see, how we react to others and things, is mainly influenced by our perception and not the actual events or people. Because of this, when you have a negative attitude, you negatively impact everything around you!
Thankfully, by taking active steps to cultivate positivity, you can counteract and improve your attitude. You can turn a gloomy outlook into a more optimistic attitude! You are in control of your life and many of the negative situations and negative thoughts you have are influenced directly by you. By taking responsibility for your actions, you can begin to remove negativity from your life and instead create positivity.
Having a positive attitude doesn’t mean that you ignore real world challenges or negative events in your life. Rather, it means you don’t let them overtake your life and drain your emotional energy. Of course, negative emotions often accompany change. But the best way to handle change is to respond, and not react to it.
Attitude is everything… and it comes down to choice. You can choose whether to have a good or a bad attitude, and whether external things can affect it or not.
------------------------------------------------------------------
Music: Epidemic Sound
Visuals: VideoBlocks / Adobe Stock / Pexels / Pixabay / Other
Voice-over Recording, Audio & Video Production by Brainy Dose
For any copyright related queries please contact us directly at [email protected]
------------------------------------------------------------------
Discover 15 ways to improve your attitude! Attitude plays a big part in life, and it affects how things turn out in the future. You see, how we react to others and things, is mainly influenced by our perception and not the actual events or people. Because of this, when you have a negative attitude, you negatively impact everything around you!
Thankfully, by taking active steps to cultivate positivity, you can counteract and improve your attitude. You can turn a gloomy outlook into a more optimistic attitude! You are in control of your life and many of the negative situations and negative thoughts you have are influenced directly by you. By taking responsibility for your actions, you can begin to remove negativity from your life and instead create positivity.
Having a positive attitude doesn’t mean that you ignore real world challenges or negative events in your life. Rather, it means you don’t let them overtake your life and drain your emotional energy. Of course, negative emotions often accompany change. But the best way to handle change is to respond, and not react to it.
Attitude is everything… and it comes down to choice. You can choose whether to have a good or a bad attitude, and whether external things can affect it or not.
------------------------------------------------------------------
Music: Epidemic Sound
Visuals: VideoBlocks / Adobe Stock / Pexels / Pixabay / Other
Voice-over Recording, Audio & Video Production by Brainy Dose
For any copyright related queries please contact us directly at [email protected]
------------------------------------------------------------------
This is another sneak peek of the upcoming spacecraft attitude control with python video series that I will be starting soon. I'm currently working through gett...
This is another sneak peek of the upcoming spacecraft attitude control with python video series that I will be starting soon. I'm currently working through getting those software more robust, as well as posting videos on the numerical methods with python series.
Link to github for this channel:
https://github.com/alfonsogonzalez/AWP
This series is going to be a prerequisite to the spacecraft attitude control series, since I am covering rotation matrices, principal axis rotations, euler angles and quaternions in the numerical methods series. So be sure to check those videos out if you haven't already.
https://youtu.be/GnusqybgIGk
#spacecraftattitudecontrol #spacecraftdynamics #spacecraftgnc
This is another sneak peek of the upcoming spacecraft attitude control with python video series that I will be starting soon. I'm currently working through getting those software more robust, as well as posting videos on the numerical methods with python series.
Link to github for this channel:
https://github.com/alfonsogonzalez/AWP
This series is going to be a prerequisite to the spacecraft attitude control series, since I am covering rotation matrices, principal axis rotations, euler angles and quaternions in the numerical methods series. So be sure to check those videos out if you haven't already.
https://youtu.be/GnusqybgIGk
#spacecraftattitudecontrol #spacecraftdynamics #spacecraftgnc
What is your need for attitude control, and how can you meet it? We talk about attitude control requirements from the extremely rigid to the very flexible, and what kinds of sensors should be employed to keep them in that attitude.
In this series of classes I will discuss the basics of satellite design. The goal is to understand all of the basic systems in satellites, to the point of having a starting point to build a satellite, such as a Cubesat. Feel free to talk with others working their way through on my discord, https://discord.gg/qnn4bmM , in the #satellite room.
For more information on what I am doing, see http://www.whereisroadster.com/ To help support this and future efforts see https://www.patreon.com/whereisroadster/. To see more information about Kerbal Space Program, visit https://kerbalspaceprogram.com/ . To check out my store, see http://www.cafepress.com/whereisroadster/.
Videos you'll find interesting!
Connecting Simulink to FlightGear: https://www.youtube.com/watch?v=jB-80cvV1Ao&t=646s
Import your own CAD designs into FlightGear: https://www.youtube.comD/watch?v=jB-80cvV1Ao&t=646s
Design an Autopilot in Simulink (For absolute beginners): https://www.youtube.com/watch?v=CJGlKCfGEA0&t=425s
Hey Everyone!
If you're an Engineering student with experience in MATLAB and interest in space, then this video is for you! I walk you through designing a controller for a Spacecraft Attitude Control System using MATLAB, Simulink. You can also design your own satellite and then import it into FlightGear to perform a visual simulation.
This video also covers control theory basics such as:
1) Laplace Transforms
2) Transfer Function
3) Bode Plot and Root Locus
4) Block Diagrams
5) PID Control (Proportional Integral Derivative)
6) Feedback Control Design
7) Tuning a control system
The MATLAB / Simulink topics covered are:
1) Simulink Animation
2) Aerospace Blockset
3) Working with FlightGear
Thanks for watching and make sure you subscribe for more videos like this!
Best wishes,
My Instagram: https://www.instagram.com/vinayak_desh/
My Website: https://www.vinayakd.com/
Have you ever wondered how NASA and Roscosmos fly the International Space Station? Well, this is how! A lot goes into controlling the ISS and that's certainly true for its attitude control. In this video, I'll take a look at the LVLH reference frame, Torque Equilibrium Attitude, reaction wheels and Control Moment Gyroscopes (CMGs).
Thanks go to "Lunar Orbit" Patreon supporter MrKumquat
Consider supporting me on Patreon: https://www.patreon.com/simplyspace
You can join Simply Space on...
Reddit: https://www.reddit.com/r/SimplySpace/
Twitter: https://twitter.com/SimplySpace_YT
Facebook: https://www.facebook.com/simply.space.official/
#ISS #NASA
A brief introduction to navigation and control of spacecraft orientation. We focus on the various mechanisms for generating torque, including: Thrusters; Reaction Wheels; Control Moment Gyros (CMGs); Gravity Gradient; and Magnetic Torquers.
Discover 15 ways to improve your attitude! Attitude plays a big part in life, and it affects how things turn out in the future. You see, how we react to others and things, is mainly influenced by our perception and not the actual events or people. Because of this, when you have a negative attitude, you negatively impact everything around you!
Thankfully, by taking active steps to cultivate positivity, you can counteract and improve your attitude. You can turn a gloomy outlook into a more optimistic attitude! You are in control of your life and many of the negative situations and negative thoughts you have are influenced directly by you. By taking responsibility for your actions, you can begin to remove negativity from your life and instead create positivity.
Having a positive attitude doesn’t mean that you ignore real world challenges or negative events in your life. Rather, it means you don’t let them overtake your life and drain your emotional energy. Of course, negative emotions often accompany change. But the best way to handle change is to respond, and not react to it.
Attitude is everything… and it comes down to choice. You can choose whether to have a good or a bad attitude, and whether external things can affect it or not.
------------------------------------------------------------------
Music: Epidemic Sound
Visuals: VideoBlocks / Adobe Stock / Pexels / Pixabay / Other
Voice-over Recording, Audio & Video Production by Brainy Dose
For any copyright related queries please contact us directly at [email protected]
------------------------------------------------------------------
This is another sneak peek of the upcoming spacecraft attitude control with python video series that I will be starting soon. I'm currently working through getting those software more robust, as well as posting videos on the numerical methods with python series.
Link to github for this channel:
https://github.com/alfonsogonzalez/AWP
This series is going to be a prerequisite to the spacecraft attitude control series, since I am covering rotation matrices, principal axis rotations, euler angles and quaternions in the numerical methods series. So be sure to check those videos out if you haven't already.
https://youtu.be/GnusqybgIGk
#spacecraftattitudecontrol #spacecraftdynamics #spacecraftgnc
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.).
Controlling vehicle attitude requires sensors to measure vehicle orientation, actuators to apply the torques needed to re-orient the vehicle to a desired attitude, and algorithms to command the actuators based on (1) sensor measurements of the current attitude and (2) specification of a desired attitude. The integrated field that studies the combination of sensors, actuators and algorithms is called "Guidance, Navigation and Control" (GNC).
Introduction
A spacecraft's attitude must typically be stabilized and controlled for a variety of reasons. It is oftentimes needed so that the spacecraft high-gain antenna may be accurately pointed to Earth for communications, so that onboard experiments may accomplish precise pointing for accurate collection and subsequent interpretation of data, so that the heating and cooling effects of sunlight and shadow may be used intelligently for thermal control, and also for guidance: short propulsive maneuvers must be executed in the right direction.
Since then, NASA has taken things slow, allowing for the significantly changing dynamics of the unfurling spacecraft to take effect before turning on its attitude control system, which points it in the right direction.
NASA has kept ACS3's attitude control system - which ... But before doing so, engineers deactivated the spacecraft's attitude control system in order to accommodate dynamic changes as the sails unfolded.
Following launch, it was released purposely without attitude control and was as a result tumbling through space ... understood the team will re-engage the attitude control to stabilise the spacecraft.
The drop in the industrialized world was driven by many factors, including shifting economic dynamics, the education, empowerment and self-determination of women, shifting attitudes about family, the ...
Autonomous hopping control, achieved through the integration of attitude control and the stabilizer, ensures stable dynamics without position feedback, enabling over 56 consecutive jumps with upright landings.
To quantitatively analyze these disturbances, this study focuses on the dynamic modeling and attitude control of the thin film pocket capture system ... derive the spacecraft's attitude dynamic equations.
Through their work, the researchers defined a single reference architecture for orbiting solar reflectors, as well as a detailed analysis of the integrating orbital dynamics, attitude control, and structures.
... fitting into small places also means players get to control the whole cast. That’s the right attitude a One Piece game should have since it is the group dynamic that makes the show special.