Microgrid Solutions

Packaged Microgrid Solutions for Critical Infrastructure

RV Sinkler manages the complete microgrid program under one coordinated delivery framework — engineering, procurement, construction, commissioning, and long-term support.

Customer Outcomes

What Owners Receive

  • One coordinated project team
  • Engineered system
  • Procurement management
  • Construction coordination
  • Testing and commissioning
  • Operator training
  • Monitoring readiness
  • Long-term support options
RV Sinkler Responsibilities

Scope of Delivery

  • Load analysis
  • Site assessment
  • System architecture
  • Energy-storage evaluation
  • Technology evaluation
  • Electrical engineering
  • Protection coordination
  • Civil coordination
  • Structural coordination
  • Procurement
  • Contractor management
  • Installation
  • Quality control
  • Commissioning
  • Cybersecurity coordination
  • Documentation
  • Training
  • Operations support
Packages

SITE · CAMPUS · DISTRICT

Three defined package tiers scale from a single critical facility to district-level resilience programs.

SITE Package

Site Package

Power
Up to 100 kW
Storage
Up to 200 kWh
Typical applications
  • · Fire station
  • · Police station
  • · Municipal building
  • · Emergency operations
  • · Water pump station
  • · Single critical facility
Core scope
  • · Load analysis
  • · System engineering
  • · Energy storage
  • · Automatic transfer equipment
  • · Controls
  • · Remote monitoring
  • · Installation
  • · Commissioning
  • · Operator training

Optional: Solar integration

Indicative implementation: 8–12 weeks after NTP, subject to project conditions

CAMPUS Package

Campus Package

Power
101–500 kW
Storage
≈ 500 kWh – 1 MWh
Typical applications
  • · Multi-facility campus
  • · Cooperative cluster
  • · Public-safety campus
  • · Institutional campus
  • · Municipal group
  • · Coordinated critical facilities
Core scope
  • · Multi-node controls
  • · Coordinated islanding
  • · Energy storage
  • · Distribution equipment
  • · Remote fleet monitoring
  • · Construction coordination
  • · Commissioning
  • · Training

Optional: Solar integration

Indicative implementation: 16–24 weeks, subject to project conditions

DISTRICT Package

District Package

Power
501 kW – 1 MW
Storage
≈ 1–4 MWh
Typical applications
  • · Substation
  • · Industrial critical load
  • · District resilience program
  • · Cooperative distribution
  • · Utility-level resilience
Core scope
  • · Advanced energy-management controls
  • · Medium-voltage integration
  • · SCADA coordination
  • · Cybersecurity coordination
  • · Energy storage
  • · Grid services
  • · Construction management
  • · Commissioning
  • · Monitoring

Optional: Solar generation · Generator integration · Additional DERs

Indicative implementation: 24–36 weeks, subject to project conditions

Package Comparison

Compare Microgrid Packages

AttributeSITECAMPUSDISTRICT
Power rangeUp to 100 kW101–500 kW501 kW – 1 MW
Storage rangeUp to 200 kWh≈ 500 kWh – 1 MWh≈ 1–4 MWh
Typical facilitiesSingle critical facilityMultiple facilitiesSubstation / district
Primary applicationPublic-safety / municipalCampus / cooperative clusterUtility / industrial critical load
Renewable optionSolar (optional)Solar (optional)Solar + additional DERs (optional)
MonitoringRemote monitoringRemote fleet monitoringSCADA-integrated advanced controls
CybersecurityStandard hardeningCoordinated multi-nodeFull cybersecurity coordination
Indicative delivery8–12 weeks16–24 weeks24–36 weeks
O&M availabilityOptional support planOptional support planOptional support plan

Final system sizing, technology selection, storage chemistry, schedule, and commercial terms depend on site conditions, load requirements, interconnection, permitting, equipment availability, applicable codes, and completed engineering.

Microgrid Value Pillars

Five Principles Behind Every System

01

Resiliency

Automatic islanding and backup capability designed to protect critical loads during grid outages.

02

Demand Management

Energy-storage dispatch strategies intended to improve load management and reduce peak-demand exposure where commercially applicable.

03

Renewable Integration

Solar and distributed-energy integration based on project objectives, site conditions, and technical feasibility.

04

Safety & Compliance

Safety planning, protection coordination, arc-flash considerations, code compliance, commissioning, and documentation integrated into delivery.

05

Remote Intelligence

Monitoring, alarms, battery-health visibility, performance reporting, maintenance planning, and lifecycle analytics.

Case Study Template · Placeholder

Multi-Site Resilience for Critical Public-Safety Facilities

A coordinated microgrid program developed to support multiple critical facilities through integrated energy storage, controls, transfer equipment, remote visibility, and island-mode capability.

Project overview

Editable placeholder — describe program scope, sites, and objectives.

Client challenge

Editable placeholder — describe reliability, resiliency, or compliance objectives.

RV Sinkler scope

Editable placeholder — development, engineering, procurement, construction, commissioning.

System architecture

Editable placeholder — publish only after client approval.

Construction approach

Editable placeholder — sequencing, safety, coordination.

Operational results

Editable placeholder — publish only after verification.

Design a Microgrid Program With RV Sinkler

Engage RV Sinkler for site evaluation, load analysis, and a coordinated microgrid delivery plan for your facility, campus, or district.

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