Udemy - Satellite Systems Engineering - 100 Labs (GNSS and Space)
- CategoryOther
- TypeTutorials
- LanguageEnglish
- Total size1 GB
- Uploaded Byfreecoursewb
- Downloads2
- Last checkedAug. 13th '26
- Date uploadedAug. 13th '26
- Seeders 0
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Infohash : CD66EA65F25B9A7F2D9C5C588E2625C5FD8863BD
Satellite Systems Engineering: 100 Labs (GNSS & Space)
https://WebToolTip.com
Published 7/2026
MP4 | Video: h264, 1920x1080 | Audio: AAC, 44.1 KHz, 2 Ch
Language: English | Duration: 8h 25m | Size: 1.01 GB
From satellite theory to production-grade GNSS, ISR & cloud-native space platforms through 100 hands-on labs.
What you'll learn
Master the fundamentals of satellite engineering, orbital mechanics, Positioning, Navigation & Timing (PNT), and multi-constellation GNSS.
Build production-ready GNSS data pipelines using industry-standard formats including NMEA, RINEX, RTCM, SP3, and IGS datasets.
Engineer geospatial platforms with Python, PostGIS, GeoJSON, Docker, Kubernetes, Kafka, and cloud-native technologies.
Process Earth Observation imagery, perform spatial analytics, and automate remote sensing workflows at scale.
Design ISR (Intelligence, Surveillance & Reconnaissance) architectures capable of ingesting, correlating, and analyzing multi-sensor data streams.
Develop Software Defined Radio (SDR) workflows for GNSS signal observation, spectrum monitoring, and interference analysis.
Deploy secure satellite communications and space internet platforms using Kubernetes, Terraform, GitOps, OpenTelemetry, and Prometheus.
Implement Zero Trust security, PKI, disaster recovery, operational resilience, audit logging, and compliance controls aligned with modern critical infrastructur
Architect sovereign, vendor-independent satellite data platforms that combine navigation, Earth Observation, ISR, observability, automation, and reliability eng
Complete a portfolio-grade capstone by building an end-to-end production satellite platform integrating GNSS, Earth Observation, ISR, Space Internet, cloud infr
Requirements
A Windows, Linux, or macOS computer
At least 16 GB RAM recommended (8 GB minimum)
Modern multi-core processor (Intel i5/Ryzen 5 or better recommended)
Approximately 80–120 GB free disk space
Stable internet connection
Python 3.12 (installation covered)
Visual Studio Code
Curiosity and willingness to build real engineering systems
Files:
[ WebToolTip.com ] Udemy - Satellite Systems Engineering - 100 Labs (GNSS and Space)- Get Bonus Downloads Here.url (0.2 KB) ~Get Your Files Here ! 1 - Introduction to Satellite Systems Engineering
- 1 - Introduction.mp4 (111.2 MB)
- 100 - Lab 90 — Production Satellite Data Platform.html (15.0 KB)
- 90 - Cloud Native Space Platforms.mp4 (90.1 MB)
- 91 - Lab 81 — Containerizing Geospatial Applications.html (14.2 KB)
- 92 - Lab 82 — Kubernetes Foundations.html (13.5 KB)
- 93 - Lab 83 — Deploying GNSS Services on Kubernetes.html (14.8 KB)
- 94 - Lab 84 — Kafka for Satellite Data Streams.html (15.7 KB)
- 95 - Lab 85 — Event-Driven Geospatial Pipelines.html (15.1 KB)
- 96 - Lab 86 — Terraform for Space Infrastructure.html (16.1 KB)
- 97 - Lab 87 — GitOps for Satellite Platforms.html (15.3 KB)
- 98 - Lab 88 — OpenTelemetry Instrumentation.html (14.7 KB)
- 99 - Lab 89 — Prometheus Monitoring Stack.html (14.2 KB)
- 101 - Security, Reliability & Compliance.mp4 (89.3 MB)
- 102 - Lab 91 — Threat Modeling for Space Systems.html (14.9 KB)
- 103 - Lab 92 — Zero Trust Architecture.html (14.6 KB)
- 104 - Lab 93 — PKI and Certificate Management.html (13.9 KB)
- 105 - Lab 94 — Secure Telemetry Pipelines.html (14.8 KB)
- 106 - Lab 95 — Disaster Recovery Engineering.html (14.4 KB)
- 107 - Lab 96 — Reliability Engineering for Navigation Services.html (15.2 KB)
- 108 - Lab 97 — GDPR and Data Governance Controls.html (15.6 KB)
- 109 - Lab 98 — DORA, NIS2 and Operational Resilience.html (15.5 KB)
- 110 - Lab 99 — Sovereign Satellite Infrastructure Blueprint.html (13.6 KB)
- 111 - Lab 100 — Sovereign Multi-Constellation GNSS, ISR & Space Internet Platform.html (14.9 KB)
- 112 - Conclusion.mp4 (90.1 MB)
- 10 - Lab 8 — GPS Architecture Deep Dive.html (18.9 KB)
- 11 - Lab 9 — Galileo, GLONASS and BeiDou Comparison.html (18.5 KB)
- 12 - Lab 10 — First Position Fix Using Open GNSS Data.html (17.9 KB)
- 2 - Foundations, Environment Setup & First Success.mp4 (63.5 MB)
- 3 - Lab 1 — Introduction to Modern Satellite & Navigation Ecosystems.html (19.6 KB)
- 4 - Lab 2 — Linux Workstation Preparation for Space Engineering.html (19.8 KB)
- 5 - Lab 3 — Installing Python Geospatial Toolchains.html (17.8 KB)
- 6 - Lab 4 — Git and GitHub for Satellite Projects.html (17.9 KB)
- 7 - Lab 5 — Docker Foundations for Reproducible Labs.html (17.5 KB)
- 8 - Lab 6 — VS Code Engineering Environment Setup.html (19.8 KB)
- 9 - Lab 7 — Understanding GNSS Constellations.html (17.6 KB)
- 13 - Navigation Fundamentals.mp4 (75.3 MB)
- 14 - Lab 11 — Coordinate Systems and Reference Frames.html (18.3 KB)
- 15 - Lab 12 — Geodetic Datums Explained.html (17.6 KB)
- 16 - Lab 13 — Earth-Centered Earth-Fixed Modeling.html (16.7 KB)
- 17 - Lab 14 — Understanding Time Synchronization.html (18.5 KB)
- 18 - Lab 15 — Satellite Orbit Fundamentals.html (17.2 KB)
- 19 - Lab 16 — Signal Propagation Fundamentals.html (17.3 KB)
- 20 - Lab 17 — Atmospheric Error Sources.html (17.5 KB)
- 21 - Lab 18 — Multipath Error Analysis.html (18.0 KB)
- 22 - Lab 19 — GNSS Accuracy Measurement.html (18.5 KB)
- 23 - Lab 20 — Building a Position Quality Dashboard.html (18.7 KB)
- 24 - GNSS Data Formats & Standards.mp4 (88.4 MB)
- 25 - Lab 21 — NMEA Message Structures.html (17.6 KB)
- 26 - Lab 22 — Parsing NMEA Streams.html (16.7 KB)
- 27 - Lab 23 — Introduction to RINEX.html (16.8 KB)
- 28 - Lab 24 — Working with Observation Files.html (17.0 KB)
- 29 - Lab 25 — Working with Navigation Files.html (17.0 KB)
- 30 - Lab 26 — RTCM Fundamentals.html (17.1 KB)
- 31 - Lab 27 — Precise Ephemeris Processing.html (17.2 KB)
- 32 - Lab 28 — SP3 Orbit Data Analysis.html (16.2 KB)
- 33 - Lab 29 — International GNSS Service Data Workflows.html (17.1 KB)
- 34 - Lab 30 — Automated GNSS Data Validation Platform.html (18.6 KB)
- 35 - Geospatial Engineering Foundations.mp4 (95.4 MB)
- 36 - Lab 31 — GIS Concepts for Engineers.html (18.3 KB)
- 37 - Lab 32 — GeoJSON Fundamentals.html (17.6 KB)
- 38 - Lab 33 — PostGIS Installation and Setup.html (18.0 KB)
- 39 - Lab 34 — Loading Spatial Datasets.html (16.8 KB)
- 40 - Lab 35 — Spatial Queries and Indexing.html (17.9 KB)
- 41 - Lab 36 — Raster Data Fundamentals.html (17.1 KB)
- 42 - Lab 37 — Vector Data Fundamentals.html (16.7 KB)
- 43 - Lab 38 — Coordinate Transformation Pipelines.html (16.2 KB)
- 44 - Lab 39 — OpenStreetMap Integration.html (17.5 KB)
- 45 - Lab 40 — Building a Spatial Analytics Service.html (19.4 KB)
- 46 - Earth Observation & Remote Sensing.mp4 (84.2 MB)
- 47 - Lab 41 — Satellite Imagery Fundamentals.html (18.4 KB)
- 48 - Lab 42 — Earth Observation Data Sources.html (17.2 KB)
- 49 - Lab 43 — Sentinel Mission Data Exploration.html (17.2 KB)
- 50 - Lab 44 — Landsat Data Processing.html (16.4 KB)
- 51 - Lab 45 — Raster Analysis Workflows.html (18.0 KB)
- 52 - Lab 46 — Vegetation Index Computation.html (16.6 KB)
- 53 - Lab 47 — Change Detection Analytics.html (17.9 KB)
- 54 - Lab 48 — Geospatial Data Quality Assessment.html (18.1 KB)
- 55 - Lab 49 — Large Scale Imagery Processing.html (17.2 KB)
- 56 - Lab 50 — Earth Observation Data Lake Architecture.html (19.0 KB)
- 57 - ISR Systems Engineering.mp4 (78.1 MB)
- 58 - Lab 51 — ISR Architecture Fundamentals.html (14.0 KB)
- 59 - Lab 52 — Sensor Fusion Concepts.html (14.0 KB)
- 60 - Lab 53 — Multi-Sensor Data Correlation.html (15.2 KB)
- 61 - Lab 54 — Building Observation Pipelines.html (15.3 KB)
- 62 - Lab 55 — Event Dete
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