Energy & Utilities · Connected Infrastructure

Energy & utilities solutions for a
smarter, more efficient India.

Meevanta combines Industrial IoT, smart sensors, AI, drones, and analytics to help energy organisations monitor assets, reduce losses, improve reliability, and optimise operations — from solar and wind farms to transmission networks and industrial facilities. From one site to a nationwide network.

✓ Energy Monitoring ✓ Solar & Wind ✓ Drone Inspection ✓ Predictive Maintenance ✓ Pan-India
Energy Command · LIVE
6 SITES
NETWORK GENERATION MW live
SOLAR
4.2MW
live
UPTIME
99.4%
stable
LOSSES
−12%
vs base
FAULTS
2
active
Losses
−12% vs base
Solar 4.2 MW
Generating
Fewer Losses

Measure and locate technical and commercial losses to reduce them.

Higher Uptime

Predictive maintenance turns outages into planned service.

Safer Inspections

Drones keep people away from height and live equipment.

Real-Time Visibility

Every asset live, across every site, on one platform.

Real-time
asset & energy monitoring
24×7
remote visibility
Days → hours
inspection time
Predictive
maintenance alerts
Vendor-neutral
open integration
Pan-India
deployment & support

Figures reflect typical outcomes of energy-monitoring deployments in India — actual results depend on your assets, network, and scope.

The problem

The challenges facing energy operators.

Every one of these strains reliability, cost, and safety — and every one has a technology answer.

Energy Losses

Technical and commercial losses across the network drain revenue when they cannot be measured or located.

Equipment Failures

Unexpected failure of transformers, turbines, and switchgear causes costly outages and emergency repairs.

Aging Infrastructure

Decades-old assets need continuous, condition-based oversight that manual checks cannot provide.

Manual Inspections

Inspecting towers, lines, and solar farms by hand is slow, costly, and hazardous.

Remote Asset Monitoring

Assets spread across states are hard to watch, so faults are found late and far from base.

Renewable Asset Management

Solar and wind output depends on the health of thousands of distributed, hard-to-monitor units.

Power Quality

Voltage, harmonics, and imbalance issues damage equipment and go unseen without monitoring.

Maintenance Costs

Reactive and fixed-schedule maintenance means both breakdowns and needless servicing.

Worker Safety

Work at height, near live equipment, and in remote terrain carries constant risk.

No Real-Time Visibility

Leaders decide on delayed, partial data instead of a live picture of the network.

The answer

How Meevanta helps energy operators.

Six connected capabilities — deployed together as one energy-monitoring programme.

Industrial IoT

Connect energy assets, meters, and equipment for real-time monitoring across the network.

Learn more →
Energy Monitoring

Track consumption, power quality, and operational performance down to the asset.

Learn more →
Drone Solutions

Inspect solar farms, power lines, towers, and hard-to-reach assets — safely from the air.

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AI & Analytics

Detect anomalies, predict failures, and surface operational inefficiencies.

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Smart Buildings

Optimise energy use in commercial and industrial facilities and substations.

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Predictive Maintenance

Monitor asset health and catch potential failures before they cause an outage.

Learn more →
Across the network

The connected energy network, end to end.

From generation to consumer — Meevanta connects the assets your operation runs on.

Solar Panels

String, inverter, and thermal monitoring.

Wind Turbines

Condition monitoring and blade inspection.

Smart Meters

Granular, remote energy and quality data.

Transmission Towers

Drone and thermal line inspection.

Battery Storage

Cell, temperature, and charge monitoring.

Energy Dashboards

One live picture of the whole network.

What we deliver

Energy & utility solutions.

A complete, modular suite — deploy one, or build toward a fully connected, data-driven network.

Energy Monitoring

Real-time energy and performance data across assets. Challenge: no live view of consumption or output. Solution: IoT meters and sensors. Benefit: measured, reducible cost and loss. Applications: plants, feeders, facilities.

Solar Farm Monitoring

String, inverter, and panel-level performance. Challenge: unseen underperformance across thousands of panels. Solution: IoT and analytics. Benefit: protected generation and yield. Applications: utility and captive solar.

Renewable Energy Monitoring

Unified view of solar, wind, and storage. Challenge: distributed, variable assets. Solution: connected monitoring platform. Benefit: reliable, optimised output. Applications: renewable IPPs and developers.

Power Infrastructure Inspection

Condition insight for lines, towers, and substations. Challenge: risky, slow manual inspection. Solution: drones and sensors. Benefit: safer, faster, complete. Applications: transmission and distribution.

Drone-Based Inspection

Aerial and thermal inspection of assets. Challenge: hard-to-reach, hazardous assets. Solution: drone survey and thermal imaging. Benefit: hotspots found early, safely. Applications: solar, lines, towers.

Predictive Maintenance

AI detects faults before failure. Challenge: unplanned outages. Solution: condition monitoring and AI. Benefit: planned, not reactive, service. Applications: transformers, turbines, motors.

Smart Metering

Granular, remote consumption and quality data. Challenge: manual, infrequent reads. Solution: smart meters and IoT. Benefit: loss detection and billing accuracy. Applications: utilities, C&I, campuses.

Power Quality Monitoring

Continuous voltage, harmonics, and imbalance data. Challenge: unseen quality issues damage equipment. Solution: power quality sensors. Benefit: protected assets, fewer trips. Applications: plants, feeders, industry.

Equipment Condition Monitoring

Vibration, temperature, and load health. Challenge: hidden asset degradation. Solution: condition sensors and analytics. Benefit: longer life, fewer failures. Applications: rotating and critical equipment.

Remote Asset Monitoring

Watch distributed assets from one place. Challenge: assets spread across states. Solution: connected sensors and dashboards. Benefit: control from anywhere. Applications: multi-site generators and utilities.

Energy Analytics

Turn energy data into insight and action. Challenge: data without decisions. Solution: analytics and dashboards. Benefit: efficiency and continuous improvement. Applications: operators and management.

Industrial IoT for Utilities

A connected foundation across the network. Challenge: siloed, disconnected systems. Solution: unified IoT platform. Benefit: one source of truth. Applications: generation, T&D, utilities.

Go deeper: energy monitoring, predictive maintenance, infrastructure inspection, and industrial IoT.

Does Meevanta handle your use case?

Energy & utility use cases.

Real applications across the sector — from the distribution grid to water utilities and public infrastructure.

Power Distribution
  • Transformer monitoring
  • Substation monitoring
  • Fault detection
Renewable Energy
  • Solar plant monitoring
  • Wind turbine monitoring
  • Generation analytics
Water Utilities
  • Flow monitoring
  • Leakage detection
  • Pump monitoring
Smart Grids
  • Grid visibility
  • Load monitoring
  • Demand analytics
Industrial Energy
  • Machine energy monitoring
  • Power quality
  • Peak-load management
Street & Public Infrastructure
  • Smart lighting
  • Energy consumption
  • Remote control
Network visibility

Your whole network, on one dashboard.

Meevanta delivers visibility, not just hardware. A sample energy-command view — generation, losses, uptime, and faults, live across every site.

Energy Command · Live
6 SITES ONLINE
Generation
4.2MW
live
Energy Losses
−12%
vs base
Asset Uptime
99.4%
stable
Efficiency
+9%
vs base
Open Faults
2active
responding
Inspections
faster
by drone
Asset status
Solar array A · Generating Turbine 3 · Nominal Feeder 7 · Overload Battery · 82% charge Substation 2 · Normal Inspection drone · Active

Illustrative dashboard for demonstration. Actual metrics reflect your assets, sites, and network.

The energy transition

Monitoring for renewable energy.

Renewable assets are distributed, variable, and hard to watch by hand. IoT, sensors, drones, and AI keep them healthy and productive.

☀️
Solar Farms

String, inverter, and thermal monitoring plus drone inspection keep large arrays — common across Rajasthan, Gujarat, and Karnataka — at peak yield.

🏠
Rooftop Solar

Remote performance monitoring and alerts for distributed C&I and residential rooftop systems across cities and campuses.

💨
Wind Energy

Turbine condition monitoring and aerial blade inspection for wind assets in Tamil Nadu, Gujarat, and Maharashtra.

🔋
Battery Energy Storage

Cell, temperature, and state-of-charge monitoring keep storage systems safe, healthy, and responsive.

Renewable Energy Plants

Unified monitoring of hybrid solar, wind, and storage plants — one dashboard for generation, health, and losses.

From the air

Drone applications for energy assets.

Drones inspect the assets that are risky, slow, or expensive to reach on foot — faster, safer, and with thermal insight the eye cannot see.

Solar Panel Inspection

Spot cracked, soiled, or underperforming panels across large arrays.

Thermal Inspection

Thermal imaging finds hotspots in panels, joints, and connections early.

Transmission Inspection

Survey long transmission corridors quickly and without outages.

Tower Inspection

Inspect tall towers and structures safely, without climbing.

Substation Inspection

Aerial and thermal checks of substation equipment and connections.

Large-Site Surveying

Map and survey sprawling generation and infrastructure sites fast.

Condition Monitoring

Repeatable aerial capture tracks asset condition over time.

Drone operations are carried out in compliance with applicable Indian aviation (DGCA) regulations. Explore our drone solutions and infrastructure inspection guide.

Reference architecture

The energy monitoring architecture.

For technical stakeholders — how data flows from a physical energy asset to a business decision, layer by layer.

ASSETS
Energy Assets

Transformers, turbines, panels, feeders, and meters across the network.

SENSE
Sensors / Smart Meters

Measure energy, power quality, temperature, vibration, and health.

EDGE
IoT Gateway

Aggregates and securely relays data from thousands of field devices.

EDGE
Edge Processing

Filters, buffers, and processes data locally, even during network gaps.

PLATFORM
Cloud Platform

Ingests, stores, secures, and manages every data stream at scale.

INTELLIGENCE
AI & Analytics

Detects anomalies, predicts failures, and quantifies losses and efficiency.

VISIBILITY
Dashboard

A unified, role-based view of the whole network in real time.

ACTION
Alerts & Decisions

Timely alerts and insight drive maintenance, dispatch, and investment.

Illustrative reference architecture. Meevanta tailors connectivity, platform, and integrations to your assets.

Under the hood

Energy & utility technologies.

Proven, open, industrial-grade technologies — matched to each asset, never locked to one vendor.

Connectivity & Protocols
Industrial IoTMQTTModbusOPC-UALoRaWANNB-IoT4G / 5G
Sensing & Edge
Smart SensorsSmart MetersIoT GatewaysEdge ComputingThermal Imaging
Intelligence & Cloud
AI AnalyticsDrone AnalyticsCloud DashboardsDigital Twins
Where we deploy

Application areas across energy.

The same connected platform, tuned to the realities of each part of the energy landscape.

Power Generation

Condition monitoring, predictive maintenance, and efficiency analytics for thermal and hydro plants.

Power Distribution

Smart metering, loss detection, feeder monitoring, and power quality across the network.

Solar Energy

Panel, string, and inverter monitoring with thermal drone inspection for utility and rooftop solar.

Wind Energy

Turbine condition monitoring and aerial blade inspection for wind assets nationwide.

Industrial Plants

Energy monitoring, power quality, and equipment health to cut cost and downtime.

Commercial Buildings

Smart building energy optimisation for offices, malls, and mixed-use developments.

Infrastructure

Condition monitoring and drone inspection of transmission, towers, and structures.

Utilities

End-to-end visibility from generation to consumer on one connected platform.

Data Centers

Power, cooling, and energy-efficiency monitoring for uptime-critical facilities.

Smart Cities

City-scale energy, street lighting, and utility monitoring for sustainable urban growth.

In practice

Example deployment scenarios.

How the technologies combine across energy segments. Illustrative technology stacks — not specific customer projects.

Solar Farm
Panel monitoring + thermal drone inspection + analytics
Distribution Utility
Smart metering + loss detection + feeder monitoring
Wind Farm
Turbine condition monitoring + aerial inspection
Power Plant
Equipment condition + predictive maintenance
Commercial Facility
Energy monitoring + smart building optimisation
Transmission Network
Tower & line drone inspection + asset monitoring
How the data flows — reference architectures
Solar Plant Monitoring
Panel Sensors IoT Gateway Cloud Platform Generation Dashboard Alerts
Water Distribution Monitoring
Flow Sensors Pressure Sensors IoT Gateway AI Analytics Leak Alert
Transformer Health Monitoring
Condition Sensors Edge Processing AI Analytics Maintenance Alert

As we complete named projects, this section will feature real, verifiable energy success stories.

The business case

Benefits that reach the bottom line.

Reduced Downtime

Predictive alerts convert unplanned outages into planned maintenance.

Improved Asset Reliability

Continuous condition monitoring keeps critical assets healthy.

Lower Maintenance Costs

Service on condition, not on a fixed calendar or after failure.

Reduced Energy Losses

Measure and locate technical and commercial losses to cut them.

Better Worker Safety

Drones and remote monitoring keep people away from hazards.

Remote Monitoring

Manage assets spread across states from one screen, anywhere.

Faster Inspections

Aerial inspection turns days of manual work into hours.

Improved Energy Efficiency

Analytics reveal waste and inefficiency you can act on.

Data-Driven Decisions

Replace delayed reports with a live, network-wide picture.

Better Asset Utilization

Understand and lift the performance of every asset.

The difference

Traditional vs connected energy operations.

The same network, run two ways. This is what changes when assets become connected.

FactorTraditional operationMeevanta connected operation
MonitoringManual meter readsReal-time, every asset
InspectionManual, risky, slowDrone — fast, safe, thermal
MaintenanceReactive — after breakdownPredictive — before failure
Energy LossesEstimatedMeasured and located
Power QualityUnmonitoredContinuously tracked
Asset DataSiloed systemsOne connected platform
SafetyPeople in the fieldRemote and aerial
DecisionsAfter-the-factData-driven and live
How we deliver

Our implementation process.

A structured, low-risk path from asset survey to a fully supported connected network.

01
Assessment

We define the outcomes that matter — losses, reliability, safety, efficiency.

02
Asset Survey

Our engineers map your assets, sites, systems, and connectivity on the ground.

03
Solution Architecture

A scalable design matched to your assets, network, and budget.

04
Pilot

A focused pilot on one site or asset class proves the value before scaling.

05
Sensor / System Deployment

Sensors, meters, gateways, and drones deployed with minimal disruption.

06
Integration

Connected to your SCADA, EMS, ERP, and existing control systems.

07
Analytics

Dashboards and AI activated to turn data into insight and alerts.

08
Training

Your teams trained to run and own the connected monitoring platform.

09
Support & Optimization

Ongoing monitoring, service, and tuning as you scale across the network.

Why Meevanta

Your energy transformation partner.

India-Focused Expertise

Solutions shaped by the realities of Indian energy and utility operations.

Industrial IoT Capabilities

Deep experience connecting and monitoring assets reliably at scale.

Drone Integration

Aerial and thermal inspection of solar, lines, towers, and substations.

Smart Building Expertise

Energy optimisation for facilities, substations, and commercial buildings.

AI-Powered Analytics

Turn asset and energy data into predictions and clear decisions.

Vendor-Neutral Architecture

The right technology for the job — open standards, no lock-in.

Scalable Solutions

From one site or asset class to a nationwide, multi-site network.

Future-Ready Technology

Built for renewables, storage, digital twins, and the energy transition.

Long-Term Support

A partner across the full asset life, from first sensor to smart grid.

Answers

Frequently asked questions.

What is energy monitoring, and how does it help?
Energy monitoring uses IoT sensors and smart meters to measure consumption, generation, and power quality in real time across your assets. Instead of periodic manual reads, you see live data — which reveals waste, losses, and inefficiency you can act on, and forms the foundation for analytics, alerts, and predictive maintenance.
How does renewable energy monitoring work?
For solar, wind, and storage, connected sensors track output and health at the level that matters — strings and inverters for solar, turbine condition for wind, cell and temperature for batteries. The data flows to a unified dashboard with AI analytics, so underperformance and faults across thousands of distributed units are caught early and yield is protected.
How does drone-based solar inspection work?
Drones fly programmed paths over a solar farm carrying standard and thermal cameras. Thermal imaging reveals hotspots that signal cracked, soiled, or failing panels and connections — issues invisible from the ground — across a large array in a fraction of the time and risk of manual inspection.
Are drone operations for energy assets carried out legally?
Yes. Drone operations are carried out in compliance with applicable Indian aviation regulations, including the Directorate General of Civil Aviation (DGCA) framework for registration, pilots, and airspace. We handle compliant operation as part of our drone services so inspection and survey are done within the rules.
What is predictive maintenance for energy assets?
Predictive maintenance uses continuous condition data — vibration, temperature, load, and power quality — with AI to detect the early signature of a developing fault in transformers, turbines, and other critical equipment. Maintenance is then scheduled before failure, avoiding costly, unplanned outages.
What kinds of sensors are used?
It depends on the asset: energy and power-quality meters, temperature and vibration sensors, current and voltage sensors, thermal cameras, and environmental sensors. We select and combine sensors to suit each asset class, and read from existing meters and equipment wherever possible rather than replacing them.
How do smart meters reduce energy losses?
Smart meters provide granular, remote, and frequent data across the network, which makes it possible to compare supply and consumption and pinpoint where technical and commercial losses occur. Locating losses is the first step to reducing them, and the same data improves billing accuracy and demand insight.
Can we monitor assets spread across different states?
Yes. The platform brings geographically distributed assets — solar farms in Rajasthan, wind in Tamil Nadu, plants and feeders elsewhere — onto one dashboard. Remote monitoring means faults are detected centrally and in real time, without waiting for a site visit.
Do we have to replace our existing SCADA or systems?
No. Our solutions integrate with existing SCADA, EMS, ERP, and control systems through open standards like MQTT, Modbus, and OPC-UA. We add visibility, analytics, and aerial inspection on top of what you run today rather than requiring a rip-and-replace.
How does power quality monitoring protect equipment?
Continuous monitoring of voltage, harmonics, imbalance, and power factor detects conditions that damage equipment and cause trips. Early visibility lets you correct issues before they shorten asset life or cause failures — particularly valuable for sensitive industrial and generation equipment.
How long does implementation take?
A focused deployment on one site or asset class — such as a solar farm or a set of feeders — is typically live within days to a few weeks, with dashboards available shortly after installation. Larger, multi-site programmes are phased so each stage delivers value before the next begins.
What is the return on investment?
Returns come from reduced downtime, lower maintenance cost, reduced energy losses, faster and safer inspections, and better asset utilisation. We do not promise a fixed figure; the right approach is to start where the cost or risk is highest, measure the improvement in a pilot, and scale on proven results for your own operation.
How is our energy and asset data kept secure?
Cybersecurity is designed in — encrypted communication, role-based access, secure gateways, network segmentation, and audit logs. Because energy is critical infrastructure, security is treated as core, so a connected network is also a protected one.
Will it work on remote sites with weak connectivity?
Yes. Wide-area, low-power connectivity (LoRaWAN, NB-IoT) and edge computing capture and process data locally even where networks are weak, syncing when connectivity returns — dependable across the remote sites common in Indian energy infrastructure.
Can the solution scale as we add assets?
Yes. Start with one site or asset class, prove the return, and expand to more sites, asset types, and regions on the same platform. It is a start-small, scale-on-results approach that keeps risk and upfront investment low.
How do we get started?
It begins with a conversation and an asset survey of your goals, sites, and systems. From there we design an architecture, deploy a pilot, prove the value, and scale with long-term support. Book a consultation to map your energy monitoring roadmap.
Our capabilities

Related solutions.

The four solution pillars behind every energy deployment.

Industrial IoT Solutions

Asset, energy, and power-quality monitoring with control and analytics.

Explore →
Smart Building Solutions

Energy, HVAC, and lighting optimisation for facilities and substations.

Explore →
Drone Solutions

Solar, transmission, tower, and substation inspection from the air.

Explore →
Robotics & Automation

Automation and machine vision for inspection and facility tasks.

Explore →
Explore more

Other industries we serve.

The same connected-technology approach, tailored to each sector.

🏭
Manufacturing

Industry 4.0 for smart factories.

🌾
Agriculture

Precision farming and IoT.

📦
Logistics

Warehouse and fleet automation.

🏗️
Construction

Connected sites and infrastructure.

🏙️
Smart Cities

Connected urban infrastructure.

Learn more

Related resources.

In-depth guides from the Meevanta engineering team on energy, IoT, and drones.

Building Energy Monitoring
🌿
Smart Buildings & Energy Efficiency
🏭
What Is Industrial IoT?
🔧
Predictive Maintenance with IIoT
🚁
Drone Infrastructure Inspection
📊
Drone Data Analytics
✈️
What Are Industrial Drones?
🔗
Connected Factory Architecture
🔮
IoT Trends in India's Industrial Future

Modernize your energy and
utility operations.

Whether you operate renewable energy assets, utility infrastructure, industrial facilities, or large commercial energy systems, Meevanta can help build a connected and data-driven monitoring strategy. Start with a free assessment — no commitment.

✔ Asset survey ✔ Solution architecture ✔ Projected impact ✔ Phased roadmap
Contact

Let's modernize
your energy network.

Tell us about your assets and goals. We respond within 24 hours.

Address
663, CCC, VIP Road,
Zirakpur, Punjab 140603
Phone / WhatsApp

Serving energy and utility operators across India — engineered in Zirakpur, deployed nationwide.

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