sl-perception d6d7e7b75a feat(jetson): AprilTag landmark detector — DICT_APRILTAG_36h11 (issue #191)
saltybot_apriltag_msgs (ament_cmake):
• DetectedTag.msg     — tag_id, family, decision_margin, corners[8],
                        center, 6-DOF pose + pose_valid flag
• DetectedTagArray.msg — DetectedTag[], count

saltybot_apriltag (ament_python, single node):
• _aruco_utils.py    — ROS2-free: ArucoBackend (cv2 4.6/4.7+ API shim),
                        rvec_tvec_to_pose (Rodrigues → Shepperd quaternion)
• apriltag_node.py   — 10 Hz timer; subscribes image + latched camera_info;
                        cv2.solvePnP IPPE_SQUARE for 6-DOF pose when K
                        available; publishes /saltybot/apriltags
• test/test_apriltag.py — 11 unit tests (11/11 pass, no ROS2 needed):
                          pose math + rendered tag detection + multi-tag

Co-Authored-By: Claude Sonnet 4.6 <noreply@anthropic.com>
2026-03-02 11:07:35 -05:00
..

Jetson Nano — AI/SLAM Platform Setup

Self-balancing robot: Jetson Nano dev environment for ROS2 Humble + SLAM stack.

Stack

Component Version / Part
Platform Jetson Nano 4GB
JetPack 4.6 (L4T R32.6.1, CUDA 10.2)
ROS2 Humble Hawksbill
DDS CycloneDDS
SLAM slam_toolbox
Nav Nav2
Depth camera Intel RealSense D435i
LiDAR RPLIDAR A1M8
MCU bridge STM32F722 (USB CDC @ 921600)

Quick Start

# 1. Host setup (once, on fresh JetPack 4.6)
sudo bash scripts/setup-jetson.sh

# 2. Build Docker image
bash scripts/build-and-run.sh build

# 3. Start full stack
bash scripts/build-and-run.sh up

# 4. Open ROS2 shell
bash scripts/build-and-run.sh shell

Docs

Files

jetson/
├── Dockerfile              # L4T base + ROS2 Humble + SLAM packages
├── docker-compose.yml      # Multi-service stack (ROS2, RPLIDAR, D435i, STM32)
├── README.md               # This file
├── docs/
│   ├── pinout.md           # GPIO/I2C/UART pinout reference
│   └── power-budget.md     # Power budget analysis (10W envelope)
└── scripts/
    ├── entrypoint.sh       # Docker container entrypoint
    ├── setup-jetson.sh     # Host setup (udev, Docker, nvpmodel)
    └── build-and-run.sh    # Build/run helper

Power Budget (Summary)

Scenario Total
Idle 2.9W
Nominal (SLAM active) ~10.2W
Peak 15.4W

Target: 10W (MAXN nvpmodel). Use RPLIDAR standby + 640p D435i for compliance. See docs/power-budget.md for full analysis.