NEPLAN

Empowering Intelligent Analysis for Modern Energy & Utilities

A modular, cloud-enabled platform delivering comprehensive analysis, planning, and asset management across electricity, gas, water, and heating networks.

What is NEPLAN & Why It Matters

NEPLAN is a next-generation analytics & planning platform designed for engineers, utilities, and infrastructure owners. It integrates power system simulation, network optimization, and asset lifecycle management into a single ecosystem.

Core Benefits

Benefit Description
Modular Architecture Pick and deploy only the modules you need (electricity networks, gas/water, heating/cooling, Asset Management, modular, flexible & project-specific solutions, Anywhere, NEPLAN 360 - On-Prem & Cloud Solutions, Education & Advanced Simulation Platform, Grounding, Lightning & EMI Analysis etc.).
Cloud & On-Premise Flexibility Access the platform anywhere: desktop, browser, or connected devices.
Full-Stack Analysis Load flow, short circuit, dynamic simulation, steady-state, Protection Co-ordination, Arc Flash, & transient models.
Asset Management & Planning Long-term budgeting, reliability forecasting, and “what-if” scenarios.
Scalability & Integration Suits small municipal grids to large national or multi-utility systems; integrates with SCADA, GIS, and IoT sensors.

Key Highlights

What NEPLAN offers at a glance

  • Unified tools for network modeling, optimization, & simulation
  • Real-time monitoring & forecasting
  • Scalable deployment - from small local grids to national infrastructure

Key Product Areas / Applications

Quick access points for what NEPLAN offers

Our Projects

Recent Design • Supply • Commissioning

Waste Management & Environmental Facility
Protection coordination study for HV supply, padmount transformers and LV distribution boards. Included verification of protection philosophy, grading between upstream utility devices and onsite protection, and definition of relay/MCCB settings to ensure fast fault clearance, minimal nuisance tripping and secure, continuous operation.

Australia • 2025 - 2026

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Packaging & Manufacturing Facility
Detailed LV network assessment including development of single line diagrams, load flow analysis at various operating scenarios, cable sizing and voltage drop checks, and short-circuit calculations. Protection coordination and arc flash hazard assessment were completed to align with relevant standards, improve safety, and support planned capacity expansion.

Australia • 2024-2025

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Underground Mining Facility
In-depth review of protection schemes for underground feeders and surface supply, including CT/VT adequacy checks, load flow and short-circuit studies, and time-current coordination of relays and breakers. The study delivered a robust, standards-compliant protection setting report tailored to high-reliability, high-safety underground mining conditions.

Australia • 2013 - 2014

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Open-Cut Mining Operation
Comprehensive HV/MV/LV system modelling from transmission intake through mine distribution networks. Scope included load flow studies, fault level analysis, motor starting assessments, reactive power/voltage control options, harmonic analysis and relay grading. Outcomes optimised network reliability, protection selectivity and power quality for critical mining processes.

Australia • 2012 - 2013

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How It Works

  1. 1
    Data Ingestion - Import your network topology, consumption data, sensor/SCADA inputs.
  2. 2
    Model Setup - Configure modules: electricity, gas, water, heating/cooling; define scenarios.
  3. 3
    Simulation & Optimization - Run analyses: load flows, short circuits, dynamic events, more.
  4. 4
    Decision Support - View dashboards, compare “what-if” scenarios, plan investments, monitor live operations.