Udemy - Space Technology Engineering - 100 Labs Mission Control

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Udemy - Space Technology Engineering - 100 Labs Mission Control (Size: 1.1 GB)
  Bonus Resources.txt 102.4 B
  Get Bonus Downloads Here.url 204.8 B
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  1 - Introduction to Space Technology Engineering
  1. Introduction.mp4 98 MB
  10 - Module 9 Defense Systems, Collision Avoidance, and Cybersecurity
  100. Lab 10 Compliance Verification for National Space Standards.html 26 KB
  11 - Module 10 Sovereign Deployment and Capstone Operations
  101. Sovereign Deployment and Capstone Operations.mp4 94.7 MB
  102. Lab 1 Containerizing Mission Control Services with Docker.html 23.1 KB
  103. Lab 2 Orchestrating Ground Infrastructure with Kubernetes.html 27.8 KB
  104. Lab 3 Infrastructure as Code for Ground Station Networks.html 27.1 KB
  105. Lab 4 Implementing Zero Trust Access to Mission Control.html 23.6 KB
  106. Lab 5 Automated CI CD Pipelines for Flight Software.html 28.3 KB
  107. Lab 6 Disaster Recovery and Failover Testing for Operations.html 23.6 KB
  108. Lab 7 Telemetry Data Sovereignty and GDPR Compliance.html 25.8 KB
  109. Lab 8 Multi-Site Ground Station Federation Architecture.html 21.1 KB
  110. Lab 9 Pre-Flight Mission Simulation and Dry Run.html 21 KB
  111. Lab 10 Capstone Mission Operations and Automated Recovery.html 24.8 KB
  12 - Conclusion
  112. Conclusion.mp4 94.9 MB
  2 - Module 1 Foundations and Local Space Tech Setup
  10. Lab 8 Integrating Jupyter Notebooks for Orbital Math.html 21.4 KB
  11. Lab 9 Automating Environment Builds with Shell Scripts.html 23 KB
  12. Lab 10 Validating Local Telemetry Pipeline Endpoints.html 19.6 KB
  2. Foundations and Local Space Tech Setup.mp4 62.4 MB
  3 - Module 2 Orbital Mechanics and Ephemeris Data
  13. Orbital Mechanics and Ephemeris Data.mp4 103.3 MB
  14. Lab 1 Calculating Keplerian Orbital Elements in Python.html 21 KB
  15. Lab 2 Converting Two-Line Element Sets to State Vectors.html 21.2 KB
  16. Lab 3 Propagating Orbits Using SGP4 Propagation Models.html 20.8 KB
  17. Lab 4 Visualizing Satellite Ground Tracks on 2D Maps.html 25.9 KB
  18. Lab 5 Calculating Launch Windows and Delta-V Budgets.html 22.1 KB
  19. Lab 6 Simulating Hohmann Transfer Orbital Maneuvers.html 22.9 KB
  20. Lab 7 Modeling Perturbations from Earth J2 Oblateness.html 22.5 KB
  21. Lab 8 Managing Ephemeris Interpolation Errors.html 24.4 KB
  22. Lab 9 Building an Automated TLE Ingestion Pipeline.html 22.2 KB
  23. Lab 10 Generating Constellation Coverage Reports.html 28.3 KB
  4 - Module 3 Spacecraft Telemetry and Ground Stations
  24. Spacecraft Telemetry and Ground Stations.mp4 97.8 MB
  25. Lab 1 Designing CCSDS Packet Structures for Telemetry.html 23.7 KB
  26. Lab 2 Implementing Frame Synchronization Algorithms.html 18.9 KB
  27. Lab 3 Ingesting Real-Time Telemetry via MQTT Brokers.html 22 KB
  28. Lab 4 Storing Time-Series Telemetry in TimescaleDB.html 23.2 KB
  29. Lab 5 Building Custom Open MCT Telemetry Plugins.html 27.3 KB
  30. Lab 6 Setting Up Prometheus Metrics for Ground Hardware.html 21.2 KB
  31. Lab 7 Grafana Dashboard Design for Satellite Health.html 27.4 KB
  32. Lab 8 Configuring Automated Anomaly Alerting Rules.html 20.4 KB
  33. Lab 9 Simulating Packet Loss and Re-transmission Logic.html 22.8 KB
  34. Lab 10 Stress Testing Ground Station Data Pipelines.html 23.4 KB
  5 - Module 4 Propulsion Simulation and Thermodynamic Modeling
  35. Propulsion Simulation and Thermodynamic Modeling.mp4 94 MB
  36. Lab 1 Modeling Chemical Rocket Engine Performance.html 17.2 KB
  37. Lab 2 Calculating Specific Impulse and Mass Ratios.html 22.3 KB
  38. Lab 3 Simulating Solid Rocket Motor Burn Rates.html 17.5 KB
  39. Lab 4 Implementing Electric Propulsion Ion Thruster Models.html 28.2 KB
  40. Lab 5 Thermodynamic Chamber Pressure Simulations.html 23.9 KB
  41. Lab 6 Feed System Pressure Drop Calculations.html 24.1 KB
  42. Lab 7 Cryogenic Propellant Boil-Off Modeling.html 29.4 KB
  43. Lab 8 Monte Carlo Analysis for Propulsion Tolerances.html 24 KB
  44. Lab 9 Validating Simulation Output Against Test Data.html 22.8 KB
  45. Lab 10 Automated Report Generation for Engine Design.html 25.6 KB
  6 - Module 5 Guidance, Navigation, and Control Systems
  46. Guidance, Navigation, and Control Systems.mp4 76.5 MB
  47. Lab 1 Quaternion Mathematics for Attitude Representation.html 21.8 KB
  48. Lab 2 Simulating Reaction Wheel Dynamics and Torque.html 20.7 KB
  49. Lab 3 Implementing PID Attitude Control Loops.html 28.5 KB
  50. Lab 4 Star Tracker Image Processing and Centroiding.html 27.4 KB
  51. Lab 5 Extended Kalman Filtering for State Estimation.html 20.4 KB
  52. Lab 6 Solar Pressure Torque Modeling and Compensation.html 24.3 KB
  53. Lab 7 Magnetic Torquer Dipole Moment Calculations.html 24 KB
  54. Lab 8 Magnetometer Calibration and Bias Removal.html 23 KB
  55. Lab 9 Simulating Three-Axis Stabilization Maneuvers.html 20.3 KB
  56. Lab 10 Validation of GNC Loops Under Sensor Noise.html 28.2 KB
  7 - Module 6 Space Situational Awareness and Tracking
  57. Space Situational Awareness and Tracking.mp4 98.4 MB
  58. Lab 1 Optical Tracking Data Processing and Reduction.html 23.2 KB
  59. Lab 2 Radar Observation Data Ingestion and Filtering.html 20 KB
  60. Lab 3 Conjunction Assessment and Miss Distance Math.html 23.9 KB
  61. Lab 4 Calculating Collision Probability Matrices.html 23.3 KB
  62. Lab 5 Automated Orbit Determination from Angles-Only Data.html 24 KB
  63. Lab 6 Cataloging Debris Population Datasets.html 21.7 KB
  64. Lab 7 Modeling Atmospheric Drag Effects on Debris.html 26.7 KB
  65. Lab 8 Space Weather and Solar Flux Impact Modeling.html 22.3 KB
  66. Lab 9 Designing Conjunction Alert Notification Systems.html 23.4 KB
  67. Lab 10 Visualizing Orbital Debris Density Gradients.html 29.5 KB
  8 - Module 7 Onboard Computing and Real-Time Operating Systems
  68. Onboard Computing and Real-Time Operating Systems.mp4 83 MB
  69. Lab 1 Introduction to FreeRTOS for Spacecraft C&DH.html 21.7 KB
  70. Lab 2 Configuring Cross-Compilers for ARM Cortex-M.html 18.5 KB
  71. Lab 3 Memory Protection and Fault Isolation in Space.html 22.1 KB
  72. Lab 4 Implementing Watchdog Timers for Recovery.html 21.5 KB
  73. Lab 5 Task Prioritization and Scheduling Strategies.html 22.1 KB
  74. Lab 6 Non-Volatile Storage Management and Wear Leveling.html 23.5 KB
  75. Lab 7 Fault-Tolerant State Machine Implementation.html 22.6 KB
  76. Lab 8 Hardware-in-the-Loop Simulation Setup.html 20.3 KB
  77. Lab 9 Debugging Race Conditions in Embedded Code.html 24.5 KB
  78. Lab 10 Radiation Mitigation Techniques in Software.html 24.9 KB
  9 - Module 8 Communications, RF, and Link Budget Analysis
  79. Communications, RF, and Link Budget Analysis.mp4 99.9 MB
  80. Lab 1 Friis Transmission Equation and Path Loss.html 24.1 KB
  81. Lab 2 Calculating Downlink and Uplink Link Budgets.html 20.7 KB
  82. Lab 3 Antenna Gain Pattern Analysis in Python.html 28 KB
  83. Lab 4 Modulation Schemes (BPSK, QPSK, GMSK).html 25.8 KB
  84. Lab 5 Forward Error Correction (Reed-Solomon, LDPC).html 24.5 KB
  85. Lab 6 Software-Defined Radio Setup with GNU Radio.html 24.4 KB
  86. Lab 7 Doppler Shift Calculation and Compensation.html 22.6 KB
  87. Lab 8 Multi-Access Techniques in Satellite Networks.html 20.4 KB
  88. Lab 9 Ground Station Tracking Antenna Rotator Control.html 19.5 KB
  89. Lab 10 RF Interference Detection and Mitigation.html 28 KB
  3. Lab 1 Installing Python and Aerospace Simulation Libraries.html 24.1 KB
  4. Lab 2 Configuring Git Repositories for Mission Code.html 22.9 KB
  5. Lab 3 Setting Up Docker Containers for Space Simulators.html 21.1 KB
  6. Lab 4 Introduction to NASA Open MCT Mission Control UI.html 22.6 KB
  7. Lab 5 Parsing Standard Ephemeris Data Formats.html 21.4 KB
  8. Lab 6 Building a Basic CLI Satellite Tracker.html 28.2 KB
  9. Lab 7 Configuring Local PostgreSQL Databases for Telemetry.html 19.7 KB
  90. Defense Systems, Collision Avoidance, and Cybersecurity.mp4 97.3 MB
  91. Lab 1 Threat Modeling for Ground Station Infrastructure.html 25.8 KB
  92. Lab 2 Cryptographic Authentication of Telemetry Commands.html 26 KB
  93. Lab 3 Secure Boot Implementation for Flight Software.html 27.1 KB
  94. Lab 4 Automated Collision Avoidance Maneuver Planning.html 25.7 KB
  95. Lab 5 Anti-Jamming Techniques for TT&C Links.html 23.9 KB
  96. Lab 6 Cybersecurity Vulnerability Scanning for Space APIs.html 21.4 KB
  97. Lab 7 Supply Chain Security for Aerospace Firmware.html 23.3 KB
  98. Lab 8 Simulating Cyber Attacks on Power Subsystems.html 22.3 KB
  99. Lab 9 Incident Response Playbooks for Satellite Operations.html 26.5 KB

Description


Space Technology Engineering: 100 Labs | Mission Control
https://WebToolTip.com
Published 8/2026

Created by Dar Al Taqniya

MP4 | Video: h264, 1280x720 | Audio: AAC, 44.1 KHz, 2 Ch

Level: All Levels | Genre: eLearning | Language: English | Duration: 112 Lectures ( 13h 23m ) | Size: 1.1 GB
From aerospace theory to production-grade mission control by building secure satellite systems across 100 hands-on labs.
What you'll learn

⚡ Architect complete satellite mission control platforms using modern cloud-native engineering principles.

⚡ Build orbital mechanics applications that calculate trajectories, propagate orbits, perform conjunction analysis, and automate maneuver planning.

⚡ Design production-grade telemetry pipelines using MQTT, PostgreSQL/TimescaleDB, Prometheus, Grafana, and NASA Open MCT.

⚡ Develop reliable spacecraft software concepts including RTOS scheduling, embedded fault recovery, watchdog systems, and hardware-in-the-loop testing.

⚡ Implement secure satellite communication systems with cryptographic authentication, RF link analysis, Zero Trust networking, and cybersecurity best practices.

⚡ Deploy highly available mission-control infrastructure using Docker, Kubernetes, Infrastructure as Code, and automated CI/CD pipelines.

⚡ Design Space Situational Awareness (SSA) systems capable of debris tracking, collision prediction, and automated alert generation.

⚡ Integrate aerospace engineering, distributed systems, observability, and security into one unified production architecture.

⚡ Build an end-to-end autonomous satellite constellation operations platform that demonstrates real-world engineering capability.

⚡ Think like a Space Systems Architect by solving complex multidisciplinary engineering problems through 100 progressively challenging laboratories.
Requirements

❗ Recommended requirements

❗ 1. Basic computer literacy

❗ 2. Basic understanding of high school mathematics

❗ 3. Curiosity about engineering and space technology

❗ 4. Python programming fundamentals are helpful but not mandatory

❗ Software used throughout the course

❗ 1. Python 3.12+

❗ 2. Visual Studio Code

❗ 3. Docker Desktop

❗ 4. PostgreSQL

❗ 5. Kubernetes (Kind or Minikube)

❗ Hardware Requirement

❗ 1. Modern Windows, macOS, or Linux computer

❗ 2. Minimum 8 GB RAM (16 GB recommended)

❗ 3. Quad-core CPU recommended

❗ 4. Approximately 40 GB free disk space

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