Researchers/Innovation Team
Our Innovation Lab is the research and development arm of Thrivyx, focused on pioneering transformative solutions in intelligent enterprise operations, AI-powered automation, logistics intelligence, and workflow management systems. The lab serves as a dynamic hub where ideas, technologies, and practical enterprise needs intersect to create scalable, real-world innovations for African and emerging markets.
Our mission is to drive innovation that simplifies complex business processes, accelerates digital transformation for organizations, and contributes to sustainable development through technology. The lab works closely with academic institutions, industry experts, and public-sector collaborators to test and validate cutting-edge solutions in areas like artificial intelligence, smart logistics, low-code systems, and data-driven decision platforms.
The Lab Where Limits Don’t Exist.
Key Research Focus Areas
- AI & Machine Learning: Applied AI for hiring, logistics, workflow, and fraud detection.
- Workflow Optimization: Low-code systems for digitizing approval and compliance workflows.
- Logistics & Inventory Intelligence: Real-time tracking, predictive delivery, and resource planning.
- Sustainability Tech: Solutions for reducing carbon footprint in transport and supply chains.
- User-Centric Interfaces: Mobile-first enterprise systems with multilingual and offline support.
Investigating The Higher Fringing Flux of an Air-Gapped System with Relative Losses (GMCN 2025)- Dr. Christopher Oluwatobi Adeogun
In this compelling talk, Dr. Christopher Oluwatobi Adeogun dives into the physics and mathematical modeling underlying advanced nanotechnology. Covering topics from theoretical frameworks to signal processing and materials science, his insights bridge the gap between cutting-edge research and real-world applications.
Stability and Behaviour of the Superposition of Non-Linear Waves in Space
The topic "Stability and Behaviour of the Superposition of Non-Linear Waves in Space" involves the study of how non-linear waveforms interact, evolve, and remain stable (or unstable) when they overlap in a spatial domain. This has implications across various fields like fluid dynamics, plasma physics, optics, and general relativity.
Concept Focus: Analyses how two or more non-linear waves overlap in a spatial domain, forming complex resultant wave patterns.
Methodology: Combines analytical and numerical techniques to study wave interactions.
Relevance: Connects to non-linear soliton behavior, energy exchange between waves, and the potential emergence of instabilities or localized structures.
The Influence of Thin Air Gap on the Electrical Parameters of a Meander Delay Line (IPPC 2023)
This investigates nearly the exact effect of a thin air gap in delay-line structures—including meander delay lines.
They show:
A double-shielded microstrip device separated by an air gap nearly equal to the microstrip thickness.
Variations in this air gap significantly alter effective permittivity, characteristic impedance, and signal delay in microstrip, coupled lines, multiconductor lines—and yes, meander delay lines too. Since uncontrolled fabrication can introduce unpredictable variations in air gap thickness, the study warns that “even slight differences…alter the effective dielectric properties and, consequently, the signal propagation delay and impedance.”
Analysis of the Bipedal, Biphasic Forward Propulsion of the Center of Gravity of the Human Body using Theoretical Physics
Dr. Christopher Oluwatobi Adeogun explores human gait via a new perspective—tracing the vertical motion of the center of mass (z(t)) and plotting it in a 3D phase-space comprising position (z), velocity (ẋ), and acceleration (ẍ). He models this motion as a nonlinear dynamical system, specifically by fitting it to a second-order Duffing equation. The parameters in this model are influenced by an individual's height and the oscillation’s angular frequency
Dr. Adeogun’s approach provides a novel, dynamic systems lens to human gait, complementing classic biomechanical views with a mathematically rich characterization. By modeling the COM's vertical dynamics via a Duffing oscillator, he enables:
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Detection of distinct gait phases (stance, propulsion, flight),
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Quantification of gait-specific stiffness parameters,
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Improved understanding of gait transitions and individual variations.
This framework holds promise for better diagnostics (identify gait anomalies), prosthetic tuning, and even the development of biomimetic humanoid systems.
The Impact of Entrepreneurship on the Economic Growth of an Economy: An Overview
Entrepreneurship plays a pivotal role in shaping the economic landscape of a country. By introducing new products, services, technologies, and business models, entrepreneurs drive innovation, create employment opportunities, and stimulate competition. This overview highlights the key ways entrepreneurship impacts economic growth and development.