Renewable and Resilient Energy

Renewable Energy Systems That Fit How Your Facility Operates.

Dreamit helps facility teams evaluate solar PV, batteries and hybrid power options against real load patterns, operating priorities, generator use and the performance expected across the system lifecycle.

Start With the Load, Not the Equipment

A Renewable-Energy Decision Must Reflect Daily Facility Operations.

System value depends on when energy is required, how demand changes, which loads need continuity and how solar, batteries, generators and utility supply will be operated together. Equipment capacity alone does not answer those questions.

Unclear Load Profile

Monthly consumption does not show when demand occurs or which loads are suitable for solar and battery support.

Uncertain Operating Strategy

The roles of grid power, generators, solar and batteries must be defined before a system can be evaluated properly.

Integration Constraints

Distribution capacity, controls, protection and generator behaviour can affect how a hybrid system should be configured.

Existing-System Underperformance

Low production or disappointing battery performance requires evidence before equipment is replaced or expanded.

Energy-System Scope

Evaluate the Whole System Against the Facility Load.

Dreamit examines the technical and operational relationships that influence feasibility, system configuration and performance. Recommendations are based on the agreed information and measurement scope.

Load and Energy Profile

Demand magnitude, operating hours, critical loads, seasonal influences and the timing of energy use.

Solar PV Feasibility

Available installation area, solar access, likely production profile, distribution interface and practical capacity options.

Battery Requirements

Intended battery role, load support, operating reserve, cycling assumptions, control priorities and replacement considerations.

Hybrid and Generator Integration

Source coordination, generator operating limits, inverter settings, changeover arrangements and the desired power sequence.

Existing-System Performance

Energy production, battery and inverter behaviour, system sizing, settings, condition, shading, maintenance, faults and load interaction.

Lifecycle and Operating Strategy

Maintenance needs, component replacement, operating responsibilities, future load changes and practical expansion pathways.

Our Advisory Approach

Move From Energy Requirements to a Defensible System Decision.

  1. 01

    Define the Facility Objective

    Clarify whether the priority is operating cost, continuity, generator reduction, capacity expansion or existing-system improvement.

  2. 02

    Establish the Energy Profile

    Review records, operating schedules and appropriate measurements to understand when and where energy is required.

  3. 03

    Assess Site and System Constraints

    Examine installation conditions, electrical interfaces, controls, source coordination and operational limitations.

  4. 04

    Develop and Compare Options

    Evaluate suitable system configurations, operating strategies, lifecycle factors and technical dependencies.

  5. 05

    Set the Next Engineering Steps

    Present the preferred direction, required verification and information needed before procurement or implementation.

Management Deliverables

A Practical Basis for Feasibility, Improvement or Expansion.

Financial conclusions depend on the quality of load information, operating assumptions, equipment data and the level of technical assessment agreed.

  • Facility load and energy-profile findings
  • Solar PV, battery and hybrid-system options
  • Source-integration and operating requirements
  • Existing-system performance findings
  • Corrective maintenance and settings priorities
  • Indicative system capacities where supported by information
  • Lifecycle and expansion considerations
  • Technical requirements for the next project stage
Begin With the Operating Requirement

Let Us Evaluate the Energy System Your Facility Actually Needs.

Tell us whether you are considering a new system, reviewing proposals or trying to understand why an installed solar or battery system is not meeting expectations.