


Frontier Engineering since 2005
From Nokia R&D to Mission-Critical Systems Intelligence

Jubap.net is an engineering and operations unit with roots in the Barcelona Nokia R&D environment, built around critical systems and applied across different technology waves and industrial contexts.
Jubap.net operates an applied AI Research and Innovation capability under a lightweight Skunk Works-inspired model, focused on developing forward-looking operational systems.
It also operates a deployment capability based on its own Tiger Team model, designed to move engineered solutions into live operation, coordinate IT and business stakeholders, and integrate solutions into value delivery processes.
With a global operating structure, JubAp.Net acts as the base unit in Mexico, supported by JubAp.us as Value Creation & Integration Node in San Francisco.

Selected Missions
Timeline: PEMEX Franchise telemetry & pre-IoT distributed device control (2006), PEMEX logistics backbone intelligence (2007), Weatherford distributed operations Information Management (2009), Urban transport computer vision – passenger counting and adaptive route-frequency control (2010), Citrus export ERP architecture with adaptive plant-control (2012), DMG MORI post merger IM (2014), AICM airport gate-slot orchestration system (2016), Experiencias Xcaret vehicle routing pre-agentic systems (2017), Defi liquidity management & wallet with AI & early warning (2019), Phylon neural networks (2023), Richemont Process Mining (2025)

Expertise Focus
Operational Intelligence for Regional Scale Programs
Design and implementation of operational intelligence layers for regional-scale programs, integrating logistics, telemetry, field coordination, maintenance intelligence and execution control across fragmented environments.
Demonstrated in infrastructure and unconventional energy contexts such as AICM and Chicontepec, where real-time visibility, predictive maintenance and distributed field coordination were needed before Industry 4.0 became mainstream.
Agentic & Early Autonomous Coordination Architectures Since 2016
Before agentic AI became mainstream, we designed centralized coordination systems managing more than 15,000 interacting operational entities in real time — using dynamic priorities, buffer control, cascade-risk management and decision memory to preserve operational stability under pressure.
Critical Systems R&D
Engineering for demanding environments where reliability matters: energy, transport, logistics and fintech.
JubAp.net’s R&D capability operates through a Skunk Works-inspired model: compact, field-driven and focused on developing systems before they become standard market categories. Its work combines applied research, rapid prototyping and implementation under operational pressure.
Multi-Actor Integration through Deployment Teams
JubAp.net Deployment Tiger Teams help integrate platforms, legacy systems, dependencies, vendors, partners and data flows.
The model compresses coordination between architecture, engineering, deployment and operational stabilization.
Applied Research: Proprietary Neural Network Architectures
Development of Phylon Architecture, a proprietary decision-support architecture combining deep learning, explainability and early-warning detection of regime shifts for unstable operating environments.
Phylon follows JubAp.net’s first-principles engineering pattern across four technology waves: distributed mobility, industrial digitalization, cloud architectures and AI-native operational intelligence.
Cybersecurity & Operational Resilience
JubAp.net applies cybersecurity as an embedded engineering principle, not as an external control layer added after design.
Rooted in Nokia infrastructure and operations environments, this capability integrates secure-by-design architecture, risk governance, compliance alignment and operational continuity into the design and stabilization of critical systems.
The approach combines cybersecurity certifications, standards-based practices and field experience.
Frontier Engineering. Our Definition
Frontier Engineering is the practice of bringing frontier science into real operating environments; creating and implementing new capabilities under mission-critical, fragmented and constraint-heavy environements.


Why Jubap?
Jubap combines two capabilities that are not so commonly found:
Long-horizon architectural thinking: mapping second- and third-order effects, anticipating governance implications.
Fast, minimalistic intervention: entering the client organization with precision, working across levels and domains when needed to create a clear before-and-after impact.
The objective is not only to solve an immediate problem, but to build self-sustaining momentum and activate a virtuous circle inside the organization.
Jubap stands for Jump Up Business Action Plan, the proprietary approach behind our intervention model.
Jubap approach was field tested and first named in Nestlé intervention in 2014

Our Ecosystem | Institutional Stewardship
The Integral Management Society

JubAp is structured around specialized and experienced Intervention Units.
JubAp.net | Engineering, Development, Innovation & Deployment | Mexico contributes to solution design and technical capabilities.
JubAp.eu | Strategy & Transformation | European Union contributes upstream strategy, enterprise transformation, governance, risk, compliance.
JubAp.us | Operational integration, rationalization, value creation | United States specialized in company integration and value creation.
The Integral Management Society / IMSV.org is a Swiss non-profit scientific and technological institution. It acts as the stewardship and methodological governance layer of our ecosystem, supporting the preservation, validation and controlled development of our frameworks. The Jubap entities operate under a collective brand within this shared community.

Standards & Governance

Articles
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Tuxpan Urban Service Case Study
JUBAP.NET Field Notes · Case Study · Distributed American Innovation The Tuxpan Urban Mobility Case: Operational Intelligence Before the Platform Era A case study in constraint-driven architecture, hybrid formal–informal mobility ecosystems, and pan-American operational intelligence — fifteen years before agentic…
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Phylons relabeling cascades
Tegrity.AI Regime-Awareness ProgrammeCode-grounded research series Tegrity.AI · Regime-Awareness Programme Revision-Aware Event Semantics and Relabeling Cascades A Code-Grounded Reconstruction of Retrospective Labels, Causal Confirmation, Hierarchical Event Levels, and Selective Rebuilding in JUBAP/Phylons Bounded rematerialization, event-time / knowledge-time separation, dependency-aware lineage, and…
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Phylons dynamic combinations
Tegrity.AI Regime-Awareness ProgrammeCode-grounded research series Tegrity.AI · Regime-Awareness Programme Dynamic Combinatorial Search for Semantic Windows Predicate-lattice encoding, multi-horizon support pruning, all-pairs interaction constraints, negative exceptions, residual mining, and selective maintenance in JUBAP/Phylons (2018) Technical working paperdraft v2.1July 2026PRIVATE Companion and…
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Phylons predictive factors cascade
Tegrity.AI Regime-Awareness ProgrammeCode-grounded research series Tegrity.AI · Regime-Awareness Programme FROM PREDICTIVE FACTORS TO SEMANTIC WINDOWS A Code-Grounded Reconstruction of the JUBAP/Phylons Multiresolution Context Architecture (2018-2021) and Its 2026 Formalization Predictive-factor code, overlapping subpf predicates, materialized cross-asset context, hierarchical event confirmation,…
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Phylons combinatorial optimization
Tegrity.AI Regime-Awareness ProgrammeCode-grounded research series Tegrity.AI · Regime-Awareness Programme Optimization Methods Across the Lineage Structure-first search, materialized decision memory, selective adaptation, and the residual quantum question A cross-system technical synthesis of how large, changing search spaces were made operational without…
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Phylons Liquidity Orquestration
Tegrity.AI Regime-Awareness ProgrammeCode-grounded research series Tegrity.AI · Regime-Awareness Programme From Expert-System Knowledge Sources to Exchange-Level Liquidity Orchestration A Code-Grounded Reconstruction of the JUBAP/Phylons Centralized Multi-Actor Coordination Architecture (2018–2021) Resource allocations, capital instances, book-level intents, shared-liquidity arbitration, executable orders, stop-managed closure,…




