flight-computer

Automate flight computer operations for rocketry on the Orange Pi 4A.

2|Updated Dec 2, 2025
One-click install
npx skills add https://github.com/njfdev/ncssm_hpr_2025_payload --skill flight-computer
Or copy as Structured Prompt for Agent
Please help me install this Agent Skill.
Skill: flight-computer
Source: https://github.com/njfdev/ncssm_hpr_2025_payload/tree/main/.claude/skills/flight-computer
Command: npx skills add https://github.com/njfdev/ncssm_hpr_2025_payload --skill flight-computer

SYSTEM DOCUMENTATION & REQUIREMENTS

💡 This Skill requires nokhwa, image, DaytonAudio, and includes scripts (resource) and references (resource) components.

What problem does it solve?

This Skill automates complex flight operations on the Orange Pi 4A, streamlining tasks like camera capture, video/image processing, and high-level mission logic for rocketry projects.

Core Features & Use Cases

  • Flight Operations: Control camera capture, video/image processing, and high-level mission logic.
  • Sensor Data Processing: Handles data from Pico Logger and audio recording from a calibrated microphone.
  • Use Case: Ideal for rocketry projects that require autonomous camera operation, audio recording, and data storage.

Quick Start

Use the flight-computer skill to initiate a mission by executing the flight_computer package on the Orange Pi 4A.

Frequently Asked Questions about flight-computer

High-intent search queries and answers about installing and using this skill.

FAQPage Schema
How do I automate flight computer operations for rocketry on an Orange Pi?

Automate flight computer operations on an Orange Pi 4A by executing a package that manages camera capture, video processing, audio recording, and mission logic for rocketry projects.

What do I need to capture video and process images on an Orange Pi 4A?

To capture video and process images on an Orange Pi 4A, you need the nokhwa and image dependencies, along with DaytonAudio calibration data for optimal audio recording performance.

Can I manage telemetry data and audio recording together for rocket missions?

Yes, manage telemetry data reception and audio recording together by executing the flight computer package, handling inputs from a Pico Logger and a calibrated microphone.

What is the best way to handle high-level mission decision logic for autonomous rocketry?

Handle high-level mission decision logic by running automated operations that process sensor data, control camera capture, and execute mission rules directly on the Orange Pi 4A.

Does this flight computer approach require specific hardware calibration?

Yes, optimal performance requires specific hardware calibration, utilizing DaytonAudio calibration data for the microphone to ensure accurate audio recording during flight operations.