Heald SoGlow™ Hybrid v3.0: Computational Engineering Design and Monte Carlo Simulation of an Integrated UVA/UVB LED Hybrid Horticultural Lighting System
收藏资源简介:
This dataset presents the complete computational engineering design, Monte Carlo simulation methodology, and reproducible simulation results for the proposed Heald SoGlow™ Hybrid v3.0 horticultural lighting system. The publication includes 300,000 simulated light-cycle realizations (100,000 simulations per lighting system) comparing the original Heald SoGlow™ Hybrid v3.0 engineering blueprint against leading commercial horticultural lighting benchmarks using a common computational framework. The proposed design incorporates an integrated multi-channel LED architecture with independently controlled UVA and UVB channels, adaptive spectral management, liquid cooling, pulse-energy buffering, and distributed lighting intended to optimize photon delivery, canopy uniformity, thermal management, and modeled crop performance. This publication includes: • Complete Monte Carlo simulation datasets • Full engineering design specification • Stage-by-stage crop modeling • Electrical engineering analyses • Optical engineering analyses • Thermal engineering analyses • Engineering pass-rate analyses • Sensitivity analyses • Paired benchmark comparisons • Publication figures • Reproducibility documentation • SHA-256 integrity verification These projected harvest targets are supported by the computational simulation data and corresponding results presented in this publication. The simulation results provide computational engineering evidence by quantifying predicted electrical, optical, thermal, canopy, energy, and modeled crop performance while identifying measurable prototype targets for future experimental validation. The reported values represent computational model predictions and engineering targets rather than direct measurements from manufactured hardware or controlled physical crop trials. Copyright © 2026 Abraham Joseph Heald. All rights reserved.



