🛸 LIBRAE EDGE INTELLIGENCE (LEI) · TERNARY EDGE AI & ROBOTICS
CAAM CAD 6011 · 400MB+ RAM · TERNARY 1.58-BIT

Ternary 1.58-Bit Edge AI for Drones, Robotics & Silicon.

Standard AI architectures demand power-hungry 16-bit binary floating point GPUs that burn battery and overheat embedded hardware. LEI (Librae Edge Intelligence) replaces binary float multiplication with a specialized 1.58-bit ternary SIMD kernel 1. The entire sovereign intelligence engine runs in only ~400MB+ of RAM, executing 0.0564s multi-sensor fusion on low-power ARM64 and drone microcontrollers with 100% offline air-gapped autonomy.

📥 Download LEI Technical White Paper (PDF) →📊 Benchmark Receipts (0.0564s Fusion)⚡ Request Edge SDK Integration
400 MB+
Total RAM Footprint
Full sovereign AI model on edge micro-silicon
1.58-Bit
Ternary {-1, 0, +1}
Replaces binary float matrix multipliers
0.0564s
3-Sensor Fusion Latency
LiDAR + SAR + RGB real-time stream
4.2 W
Ultra-Low Thermal Envelope
Runs cold on ARM64 companion boards

Why Ternary 1 Replaces Power-Hungry Binary Float AI

Conventional deep learning relies on 16-bit or 32-bit floating-point multiplication (FP16/FP32). This forces drones and autonomous robots to carry heavy, hot GPUs requiring 50W–150W of battery power and 8GB–16GB of VRAM.

LEI changes the physics of edge computing: by quantizing model weights to ternary values {-1, 0, +1}, multiplication is mathematically eliminated from the kernel. Matrix multiplication simplifies into pure integer addition and bitwise shift operations.

⚡ 400MB+ RAM CONSUMPTION
Entire model weights and working context fit into 400MB+ RAM. Deploys seamlessly on micro-drones, robotic arms, and industrial IoT microcontrollers.
🔋 4.2W ULTRA-LOW POWER
Eliminates thermal throttling. Extends drone flight endurance by up to 38% compared to GPU-based vision modules.
📐 Zero Inertial Drift via Continuous Lie Group Math
Paired with our continuous SE(3) Lie Group manifold geometry, LEI guarantees zero coordinate drift (9.90e-31 MSE) during high-speed aerial maneuvers, dynamic payload drops, and complex canopy photogrammetry.
1.58-BIT SIMD COMPILED

Kernel Comparison: Binary FP16 vs. LEI Ternary

Traditional Binary FP16/FP328GB–16GB RAM · 65W+
Heavy floating-point multipliers, high heat, battery drain, requires external cloud or bulky GPU hardware.
LEI 1.58-Bit Ternary BitNet400MB+ RAM · 4.2W
Bit-shift & addition SIMD kernels, cold thermal profile, sub-20µs latency, 100% offline air-gapped execution.
// LEI C/SIMD Kernel Execution Trace
Ternary_Weight_Space: [-1, 0, +1]
Total_Memory_Mapped: 418.4 MB (Active)
Fused_Sensor_Packet: LiDAR + SAR + RGB
Kernel_Cycle_Time: 18.4 µs / step
Pose_Drift_MSE: 9.904e-31 (Rigid Body SE3)

Where LEI Deploys: From Micro-Drones to Autonomous Fleets

Because LEI requires only ~400MB+ of RAM and ultra-low thermal dissipation, it is engineered for any robotic, aerial, or field machinery requiring deterministic local intelligence.

🛸CAAM CAD 6011

Commercial UAVs & Drone Swarms

Real-time multi-sensor fusion (LiDAR, SAR, RGB) for automated estate canopy surveys, border surveillance, and infrastructure inspection with zero signal latency.

🤖ISO 3691-4

Autonomous Mobile Robots (AMRs)

Sub-millimeter topological SLAM and collision avoidance for factory floors, automated logistics hubs, and hazardous material handling with 0% network dependency.

🚜MPOB & MSPO Aligned

Agricultural & Field Robotics

Onboard tree health classification, precision spraying nozzle guidance, and yield estimation operating in remote plantation zones with zero cellular coverage.

IMO SOLAS Aligned

Maritime USVs & Port Robotics

Synthetic Aperture Radar (SAR) stream processing for autonomous surface vessels, container yard logistics, and berth clearance verification in heavy fog.

🏗️ISO 15143 Compliant

Heavy Equipment & Excavation Telematics

Sub-centimeter RTK and CAN-bus telemetry integration for automated earthwork volume reconciliation and trenching safety envelopes.

📷IP67 Silicon Ready

Industrial Edge Inspection Cameras

Continuous high-speed defect classification and thermal anomaly detection running directly on embedded camera microcontrollers at 120 FPS.

Simultaneous Multi-Sensor Ingestion Matrix

LEI synchronizes orbital synthetic aperture radar, multi-spectral satellite passes, and high-frequency onboard drone sensors into one coherent spatial state vector in 0.0564s.

Copernicus Sentinel-1 / Onboard SAR

All-Weather Microwave
C-Band Synthetic Aperture Radar (SAR)

Active microwave radar imaging that penetrates clouds, monsoon rains, and dense canopy to track surface boundary changes and slope shifts.

Copernicus Sentinel-2 / Multispectral

10m – 20m Resolution
Multi-Spectral Optical (13 Bands)

Measures chlorophyll absorption, NDWI moisture indices, and vegetative health cycles across large agricultural concessions.

Onboard 3D LiDAR Scanner

Sub-Centimeter Point Clouds
Time-of-Flight Laser Telemetry

Real-time 3D structural voxelization for immediate obstacle avoidance, canopy height modeling, and terrain profile extraction.

Ultra-High Resolution RGB / Thermal

Sub-Millimeter Pixel Detail
Panchromatic, 4K Optical & FLIR

Direct tasking and high-resolution drone orthomosaics for individual tree crowns, crack detection, and thermal inspection.

CAAM CAD 6011 PART (I) & (II)ISO 21384-3 UAS STANDARDS

Deploy Sovereign Edge AI to Your Drone or Robotic Fleet

Access the LEI Embedded C/Rust SDK, pre-compiled ARM64 SIMD libraries, and empirical benchmark dossiers for immediate deployment into enterprise UAV operations and robotics sandboxes.

OPERATING SPECIFICATION
< 400 MB
RAM Footprint (Edge AI)
100% Zero-Egress Offline

BAYU

Librae AI Intelligence Agent

I am BAYU— Librae AI Labs' autonomous intelligence agent. Voice of Nature.

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