Introduction to Spacecraft GN&C - Part 1

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  • Опубликовано: 4 ноя 2024

Комментарии • 22

  • @manashchakraborty9553
    @manashchakraborty9553 6 лет назад +7

    Awesome Lectures. Looking forward to see more from Dr. Steve Ulrich

  • @talentbuilderbuddy3746
    @talentbuilderbuddy3746 6 лет назад +5

    It helped me a lot in understanding the behavior of satellite ... Thank you so much for key knowledge

  • @gossipGirlMegan
    @gossipGirlMegan 3 года назад

    The best GNC lecture I've heard.

  • @Mauda_a96
    @Mauda_a96 2 года назад

    Great lecture to start with the GNC topic outside a University!

  • @vinaykumarharshavard
    @vinaykumarharshavard 4 года назад +10

    where is Introduction to Spacecraft GN&C - Part 2 ? please guide me

    • @paulsesh
      @paulsesh 2 месяца назад +1

      ruclips.net/video/S48ZGGW6d4I/видео.html

  • @aerohk
    @aerohk Год назад +1

    Very interesting, thank you for your work. I used to help make satellite flight control computer, but not educated in the flight software. Appreciate the lecture

  • @paulsesh
    @paulsesh 2 месяца назад +3

    PART 2: ruclips.net/video/S48ZGGW6d4I/видео.html

  • @antonellamuto8256
    @antonellamuto8256 2 года назад

    Much interesting! I’ve learned a lot about GNC functions in spacecraft model

  • @dbr_199
    @dbr_199 Год назад +1

    What major would be prefered to work as a GNC engineer? CS, ElecEng, MechEng?

    • @ai_backend
      @ai_backend 6 дней назад

      ElecEng
      You Study this towards final year..

  • @celilylmaz4426
    @celilylmaz4426 2 года назад

    Great lecture for GNC enthusiastics, thank you sir.

  • @pelayo8465
    @pelayo8465 Год назад

    Thank you for the help

  • @toto44182
    @toto44182 3 года назад

    at 14:53 Nice picture of the high end HYDRA Star Tracker made by Sodern French company

  • @BlackHermit
    @BlackHermit 4 года назад

    Great lecture, thank you so much for uploading this!

  • @abhishekrajan4073
    @abhishekrajan4073 4 года назад

    Very nicely explained sir, thanks a lot,

  • @MemoryofMichaelJackson
    @MemoryofMichaelJackson 6 лет назад

    Good information .....I look forward for your new videos

  • @AnilKumar-ch5mw
    @AnilKumar-ch5mw 4 года назад

    Awesome lecture sir, thanks a lot

  • @drblade2292
    @drblade2292 2 года назад +1

    Please help me in solving this problem:
    The initial (3-2-1) Euler angles yaw, pitch and roll of a vehicle are (\psi, \theta, \phi)(ψ,θ,ϕ) = (40, 30, 80) degrees. Assume the body angular velocity vector of the craft is given through the BB frame components as Bωω=⎡⎣sin(0.1t)0.01cos(0.1t)⎤⎦20deg/s. Write a program to numerically integrate the yaw, pitch and roll angles over a simulation time of 1 minute. Enter the Euler angle norm \sqrt{\psi^2 + \theta^2 + \phi^2}
    ψ
    2

    2

    2
    at the simulation time step 42s. Express angles in radians.
    [Hint: if you are unsure, look at the "Optional Review: Integrating Differential Kinematic Equations" video.]
    [​Hint: In the integration, start with the initial angles and just integrate them without mapping them to specific quadrants

  • @Jirayu.Kaewprateep
    @Jirayu.Kaewprateep Год назад +1

    📺💬 ODC, sensors, feedback, and controls. There are a lot more when talking about the controls system to help the satellites travel along the orbit in the shade of the sun.
    🥺💬 There are multiple pages I see from the materials where sensor and controls it is digital sensors and analog sensors signal control. Navigation included estimates of targets or values and how does it different than digital signals⁉ 🧸💬 It does not require quantization and some values from different scales can compare with the same domain.
    ( They added conversation 📺💬 Do you understand they will not stop and try to do IQ test can you remember they keep the speaker and those flies running 🥺💬 I did not pay attention to them but I read from your share of knowledge🔊🗯 กรุณายอมนะไอ้แม่ ... 🏡🥺💬 เกี่ยวอะไร ไม่สนใจ )

  • @ahmednor5806
    @ahmednor5806 Год назад

    🙏💐🙏