Wastewater Intelligence Software Suite: Collection Solution

Tigernix Wastewater Collection: Centralised, Industry 4.0 smart asset management for all wastewater collection components (infrastructure, modeling, networks, maintenance) on one visual platform.
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Wastewater Intelligence Software Suite:

Collection Solution

Tigernix Wastewater Collection Solution integrates advanced Industry 4.0 paradigms, embedding intelligent asset management into a singular, hyper-connected platform. This infrastructure centralisation harmonises hydraulic modelling, pipeline network configurations, and predictive maintenance workflows, offering a seamless visual interface for real-time data-driven decision-making and system-wide performance optimisation.

Wastewater Collection Solution

Tigernix Collection
Solution Covers

Holistic Data Convergence Interface

This advanced software platform functions as an all-encompassing nexus, harmonising real-time data streams from basins, pipelines, and pumping stations into a singular, intelligent dashboard. It facilitates optimal data synchronisation, driving efficient asset orchestration, resource allocation, and operational refinement through data-driven, contextual decision-making capabilities.
Holistic Data Convergence Interface
Asset Management and Digital Integration

Asset Management and Digital Integration

Through omnipresent data integration of AI, machine learning, and Industry 4.0 technologies, this solution enables a fully automated and data-centric governance of wastewater collection assets. It unifies screening, diagnostics, and operational workflows into a singular, real-time, smart platform for predictive asset maintenance, resilience enhancement, and system-wide operational efficiency.

Predictive Asset Intelligence

Empowered by deep-learning CRP models, the Tigernix solution generates high-fidelity predictive analytics for sewage asset management. By integrating environmental impact data with asset-specific operational metrics, it visualises cost-risk correlations, downtime prediction, and maintenance efficacy, offering proactive control through AI-enhanced decision-making and real-time performance tracking on a dynamic digital visual wall.
Predictive Asset Intelligence
Total Investment Modelling

Total Investment Modelling

Our software Utilises sophisticated financial modelling techniques to analyse wastewater collection asset investments, detailing CAPEX and OPEX components, depreciation curves, and TOTEX projections. The platform integrates predictive algorithms for optimal financial transparency, facilitating strategic decision-making and long-term infrastructure cost management via an integrated digital dashboard.

Prognostic Infrastructure Reliability Matrix

We use AI-infused diagnostics to synthesise condition-based telemetry and criticality-index modelling to delineate degradation kinetics. It enables pre-emptive anomaly resolution and systemic performance forecasting across wastewater assets, catalysing a paradigm shift from reactive maintenance to autonomous operational resilience through intelligent fault anticipation and infrastructure survivability analytics.
Catchment Asset Maintenance

Capabilities of Tigernix
Collection Solution

Spatio-Intelligent Digital Replication Engine

Integrating sensor-laden telemetry and AI-based geospatial analytics, this constructs a cyber-physical twin of the wastewater infrastructure. It facilitates real-time hydraulic simulation, systemic topological modelling, and adaptive flow behaviour prediction. enabling utilities to orchestrate infrastructure management via a high-fidelity digital command ecosystem.
Spatio-Intelligent Digital Replication Engine
AI-IoT Disruption Profiling System

AI-IoT Disruption Profiling System

Integrating deep anomaly intelligence and pervasive sensing, the platform deciphers anomalous flow kinetics and systemic mechanical inconsistencies. Automated telemetry relays through SCADA architecture initiate pre-configured diagnostic workflows, enabling real-time failure containment and proactive mitigation strategies across decentralised wastewater conveyance subsystems.

Geo-Spatial Odour Emission Surveillance

This software synergises sensor-array intelligence and geospatial informatics to dynamically visualise odour concentration gradients over urban matrices. SCADA-linked alerting mechanisms trigger adaptive remediation protocols, empowering utilities with a cyber-physical command interface for preemptive mitigation of olfactory intrusions in high-density wastewater collection basins.
Geo-Spatial Odour Emission Surveillance

Immersive Infrastructure Integrity Framework

Through a synergistic stack of Digital Twin dynamics, embedded IoT diagnostics, geospatial analytics, and intelligent scheduling heuristics, the Tigernix system ensures omnidirectional visualisation of inspection locations. Its predictive maintenance protocols dynamically converge with utility-level compliance mandates, building operational resilience and techno-regulatory alignment in real time.

Pumping Station and Lift Control

Fusing SCADA analytics, AI-forecasting engines, and cloud-synchronised electromechanical datasets, the Tigernix platform constructs a digital twin of lift station assemblies. It performs continuous KPI benchmarking, anomaly localisation, and inefficiency stratification, enabling real-time precision targeting of risk-intensive infrastructural vectors and elevating preemptive maintenance protocols.
Pumping Station and Lift Control

AI-Augmented Hydroinformatics

Our platform employs neural-encoded analytics and self-evolving ML architectures to perform real-time infiltration and inflow (I&I) localisation, autonomously delineating hydraulic aberrations, subterranean ingress vectors, and extraneous flow pathways, enabling the precision modulation of capacity thresholds and risk-neutralisation within wastewater conveyance matrices.

AI-Orchestrated Flow Intelligence Modeller

Through integrated AI-dynamic telemetry systems, advanced sensoric mapping, and hyperrealistic Digital Twin hydrological constructs, Tigernix software extrapolates high-resolution trends in fluidic dynamics, pressure gradients, and systemic anomalies to drive data-refined investment prioritisation across ageing or stressed wastewater infrastructure portfolios.
AI-Orchestrated Flow Intelligence Modeller
Cyberphysical Wastewater Intelligence

Cyberphysical Wastewater Intelligence

Through its integrative AI pattern mining, historic performance vectors, and failure prediction indices, this digital twin–enabled system continuously tracks asset stress metrics, embeds first-stage screening components, and deploys adaptive infrastructure planning blueprints, ensuring long-term hydraulic asset synchronisation within a fully systematised and command-responsive digital interface.
Acknowledging the inherent constraints faced by conventional wastewater utilities, Tigernix pioneers a centralised, hyper-intelligent paradigm for wastewater collection network management. Through a convergence of real-time telemetry, predictive algorithmic modelling, and asset optimisation heuristics, our Industry 4.0-driven platform ensures systemic resilience, precision asset governance, and sustainable infrastructure continuity across a 15-year horizon.

Key Benefits of our solution:-

  • Unifies all wastewater collection processes into one easy-to-manage digital dashboard.
  • Provides immediate visibility of operational performance, facilitating faster decision-making.
  • Allocates resources based on real-time asset condition and performance insights.
  • Instantly identifies and addresses issues such as blockages, leaks, or equipment failures.
  • Extends asset life by proactively managing maintenance schedules and reducing unplanned repairs.
  • Tailors dashboards to meet specific operational, maintenance, or performance metrics for different users.
  • Increases transparency of wastewater collection operations with live data and performance analytics.
  • Enhances control over wastewater flow, reducing risks of system overflows and backups.
  • Optimises pump performance, reduces energy consumption, and boosts efficiency.
  • Aligns with sustainability goals through efficient water usage and waste management.