Automatic Weather Station for Hyperlocal Weather Intelligence
Monitor temperature, humidity, atmospheric pressure, rainfall, wind, solar radiation, soil conditions, and other environmental parameters with connected Aurassure AWS monitoring.






















Let’s Discuss Your Monitoring Requirements
Small Weather Changes Can Create Major Operational Impact
Weather conditions can change significantly within short distances. Without real time, location specific measurements, organisations may rely on distant weather stations or general forecasts that do not fully represent conditions at the site where decisions need to be made.
Limited Site Specific Visibility
Regional forecasts may not capture local variations in rainfall, wind, temperature, humidity, or solar conditions. This can leave teams without an accurate picture of what is happening at the actual site.
Slower Operational Decisions
When current weather conditions are unavailable, teams may react later to heavy rainfall, high winds, heat, changing soil conditions, or other environmental events that can affect day to day operations.
Gaps in Environmental Data
Incomplete or infrequent measurements make it harder to understand local weather patterns, compare historical conditions, investigate events, and build reliable environmental records over time.
Greater Risk Across Critical Operations
Weather influences infrastructure, agriculture, construction, renewable energy, industrial facilities, research, and public services. Limited local visibility can affect safety, planning, productivity, and operational continuity.
Compare Aurassure AWS Models
Choose the monitoring capability that fits your site, application, and accuracy requirements. Compare the key differences first, then explore detailed technical specifications when needed.
AWS Lite
Core hyperlocal weather monitoring for sites that need practical atmospheric, wind, rainfall, ultraviolet, and light visibility.
AWS Pro
Expanded operational weather monitoring with ultrasonic wind, professional rainfall, solar irradiance, soil measurements, and structural tilt visibility.
AWS Expert
Highest capability configuration with higher accuracy wind measurement, professional precipitation, and Class A GHI or GTI sensing.
Compare Key Capabilities
Start with the differences that matter most when selecting a configuration. Full range, accuracy, resolution, and sensing information is available below.
Detailed Technical Specifications
View range, accuracy, resolution, sensing principle,
and configuration information
±0.06 hPa relative
Long term stability of ±0.2 hPa over 12 months. Appropriate outdoor packaging is required.
±0.06 hPa relative
Long term stability of ±0.2 hPa over 12 months. Appropriate outdoor packaging is required.
±0.06 hPa relative
Long term stability of ±0.2 hPa over 12 months. Appropriate outdoor packaging is required.
±10% above 5 m/s
±2% above 10 m/s
Heating mode is available for challenging weather conditions.
1 mm above 1000 mm
Not recommended for rain rates above 100 mm/h.
Up to 600 mm/h
200 mm collection orifice with stainless steel construction.
Up to 600 mm/h
200 mm collection orifice with stainless steel construction.
A calibrated irradiance range and accuracy are not defined in the supplied AWS Lite configuration. Ultraviolet and light intensity are available separately.
Total solar irradiance measurement with a spectral range of 300 to 1100 nm.
Supports GHI or GTI measurement. Separate units are required when both orientations must be monitored.
Final range, accuracy, resolution, and sensing method depend on the selected project configuration.
Final range, accuracy, resolution, and sensing method depend on the selected project configuration.
Final specification depends on the selected measurement requirement.
Final specification depends on the selected measurement requirement.
Soil moisture is available as a project configured extension. Final specifications depend on the selected sensing option.
±3% from 51 to 100%
1% from 51 to 100%
±3% from 51 to 100%
1% from 51 to 100%
Soil temperature is available as a project configured extension. Final specifications depend on the selected sensing option.
Tilt measurement is not part of the supplied AWS Lite configuration.
Y: −90° to +90°
Designed for mast installation.
Y: −90° to +90°
Designed for mast installation.
Globe temperature and noise monitoring can be configured according to project requirements.
Globe temperature, noise, ultraviolet, and light intensity can be configured according to the project.
Globe temperature, noise, ultraviolet, and light intensity can be configured according to the project.
Standards and Technical Alignment
Review component level assessment against the supplied
WINDS / CEA, IMD, and WMO requirements
Each status is based on a component level comparison between the listed sensor specification and the supplied requirement for that parameter. It does not represent certification of the complete Automatic Weather Station.
Air temperature accuracy is suitable, while the supplied minimum temperature range does not fully cover the referenced WMO requirement.
Mechanical wind speed and integrated rainfall are intended for general monitoring rather than professional meteorological compliance.
Wind speed range and accuracy do not meet the referenced professional assessment.
Wind direction meets the supplied WINDS / CEA and WMO assessment but not the stated IMD accuracy requirement.
Rainfall alignment remains conditional at higher rain rates and for specific mechanical requirements.
The solar sensor supports operational irradiance monitoring but is not assessed as a WMO type pyranometer.
Wind speed meets all three supplied component assessments.
Wind direction does not meet the stated IMD accuracy requirement of ±2°.
Rainfall alignment remains conditional for higher rain rates and specific mechanical requirements.
Separate units are required when GHI and GTI must be measured simultaneously.
Soil temperature does not meet the stated WMO accuracy requirement of ±0.2°C.
Need Help Selecting the Right AWS?
Tell us what you need to measure, where it will be deployed, and the accuracy or standards requirements for your project. Our team can recommend the appropriate configuration.
From Weather Data to Better Decisions
Aurassure AWS continuously measures local weather conditions, sends the data to a connected platform, and turns it into live intelligence that teams can monitor, analyse, and act on.
Capture Local Conditions
Measure weather directly at the siteSensors continuously capture weather and environmental conditions at the exact monitoring location.
Send Data Reliably
Connect the station to your digital environmentMeasurements are transmitted to the Aurassure platform using communication options suited to the deployment site.
See What Is Happening
Turn continuous readings into visibilityLive and historical data helps teams understand current conditions, changing patterns, and developing weather trends.
Turn Intelligence Into Action
Bring weather intelligence into operationsTeams can respond through configurable alerts, remote access, and integration with operational systems.
Built for Connected Monitoring
Configure how frequently data is reported, how the station connects, and how teams access and use weather intelligence.
Build the Right AWS Setup for Your Site
Configure monitoring parameters, connectivity, reporting intervals, alerts, and integrations around your deployment requirements.
Final reporting intervals, connectivity, dashboard access, alerts, and integration requirements are defined according to the site, application, and selected AWS configuration.
Weather Intelligence Across Critical Operations
From agriculture and renewable energy to infrastructure, industry, cities, and research, Aurassure AWS provides site specific weather visibility where local conditions influence planning, safety, and performance.
Agriculture and Smart Farming
Support irrigation planning, spraying windows, crop protection, and field operations using local weather and soil conditions.
Solar and Renewable Energy
Combine weather and solar measurements to support performance analysis, forecasting, maintenance, and renewable asset operations.
Construction and Infrastructure
Track changing site weather to support lifting activities, work scheduling, drainage readiness, outdoor safety, and infrastructure protection.
Industrial Facilities
Use site specific weather alongside environmental monitoring to understand local conditions and strengthen operational preparedness.
Cities, Utilities and Transport
Build hyperlocal weather visibility across roads, railways, ports, utilities, and public infrastructure to support resilient operations.
Research and Meteorology
Create continuous weather records for field studies, academic programmes, environmental research, and professional monitoring projects.
Have a Different Application?
Aurassure AWS can be configured around the parameters, accuracy, connectivity, reporting, and integration requirements of your project.
Configuration note: Model recommendations are typical starting points. Final selection depends on required parameters, measurement performance, site conditions, standards, installation design, and project specifications.
Download AWS Expert Specification Sheet
From Site Assessment to Reliable Weather Monitoring
Every Aurassure AWS deployment is planned around the monitoring objective, site conditions, installation requirements, connectivity, and long term measurement reliability.
Assess the Site
Understand monitoring goals, exposure, surroundings, available infrastructure, and required environmental parameters.
Configure the Station
Select the AWS model, sensors, connectivity, reporting frequency, and integration requirements for the project.
Install and Commission
Position sensors, establish mounting and power, configure communication, and validate data before operational use.
Monitor and Maintain
Review data quality and follow inspection, maintenance, alignment, and calibration schedules throughout the deployment lifecycle.
Designed Around the Monitoring Site
Reliable weather monitoring depends on how the station is positioned, powered, connected, configured, and maintained in the field.
Siting and Exposure
Position sensors to reduce obstruction, reflected heat, nearby structures, and other influences that can distort representative measurements.
Mast and Mounting
Select mounting around sensor configuration, measurement height, structural stability, and accessibility for inspection and service.
Power Planning
Plan power around site availability, uptime requirements, field accessibility, and the final station configuration.
Connectivity
Choose communication according to network availability and integration requirements so field measurements reach the platform reliably.
Data Configuration
Configure reporting frequency, dashboards, alerts, historical records, and integrations around how weather data will be used.
Maintenance and Calibration
Protect measurement quality through inspection, cleaning, calibration, alignment checks, and preventive maintenance.
Reliable Weather Data Starts With the Deployment
Sensor performance is one part of measurement quality. Correct exposure, mounting, communication, commissioning, and maintenance all influence the reliability of the final weather record.
Planning an AWS Deployment?
Share your site conditions, monitoring parameters, available infrastructure, and operational requirements with our team to plan the appropriate deployment.
Configuration note: Final installation design depends on the selected AWS model, monitoring parameters, site conditions, measurement standards, available infrastructure, and project specifications.
Built for Measurement Confidence
Reliable weather data depends on the right sensor performance, correct siting, calibration, maintenance, and a configuration aligned with the measurement requirements of the project.
Accuracy
Select measurement performance around the needs of the application, from operational visibility to professional monitoring.
Exposure
Correct height, orientation, shielding, exposure, and distance from nearby influences help support representative measurements.
Calibration
Calibration and verification schedules are defined around the selected parameters, operating environment, and project requirements.
Lifecycle
Inspection, maintenance, alignment checks, and preventive servicing help preserve measurement quality throughout operation.
Choose the Measurement Level Your Project Requires
Aurassure AWS configurations support different levels of measurement performance. Alignment with WMO, IMD, WINDS, CEA, or project specifications is assessed at the relevant parameter and configuration level.
Operational Monitoring
Designed primarily for practical site visibility where continuous local weather information is the main requirement.
Advanced Operational Monitoring
Extends measurement capability while balancing performance, deployment flexibility, and broader sensing requirements.
Professional Monitoring
The strongest standards oriented configuration in the Aurassure AWS range for projects with higher accuracy requirements.
References to WMO, IMD, WINDS, or CEA apply at the relevant measurement and component level unless conformity of the final complete installation has been separately validated. Final conformity can also depend on sensor selection, shielding, mast height, exposure, calibration, data acquisition, and field installation.
Measurement Quality Is Maintained Over Time
Measurement confidence continues through configuration, commissioning, verification, maintenance, and parameter specific recalibration where required.
Have a Specific Measurement Standard?
Share your required parameters, accuracy criteria, site conditions, and applicable WMO, IMD, WINDS, CEA, or project requirements with our team.
See Weather Conditions. Understand What Comes Next.
Bring live measurements, historical trends, forecasts, alerts, and station visibility into one connected platform that teams can access remotely.
Notification generated when configured conditions are reached.
Turn Weather Data Into Operational Visibility
Monitor current conditions, review historical patterns, anticipate changing weather, and connect environmental intelligence with operational workflows.
Live Monitoring
See current weather measurements from connected stations in one centralized digital view.
Trends and Forecasts
Review historical conditions and forecast information to support planning and weather aware decisions.
Configurable Alerts
Define parameter thresholds so teams can receive notifications when weather conditions require attention.
Device and API Integration
Track connected stations and integrate weather data with other digital systems through API based workflows.
Connected Anywhere
Give operational teams access to weather intelligence through the digital channels and integrations suited to their workflow.
See the Aurassure Platform in Action
Explore how live AWS data, historical trends, alerts, forecasts, and connected stations can be managed from one digital platform.
Dashboard capabilities, forecast availability, alert workflows, user access, and integrations can be configured according to the selected deployment and project requirements.
Weather Monitoring Built Around Your Operations
Aurassure combines configurable sensing, hyperlocal weather visibility, connected digital monitoring, and flexible deployment so organisations can build the level of weather intelligence their operations require.
Start With the Decision. Configure the Monitoring Around It.
Different operations require different parameters, measurement performance, reporting frequencies, integrations, and deployment approaches. Aurassure AWS can be configured around the project requirement rather than forcing every site into one fixed specification.
Configurable by Application
Select environmental parameters and measurement performance according to the operational requirements of the application and site.
Hyperlocal Weather Visibility
Measure weather directly at the operational location instead of relying only on broader regional observations that may not represent site conditions.
Connected Digital Intelligence
Bring live measurements, historical trends, forecasts, alerts, and remote visibility into one connected digital environment.
Flexible Field Deployment
Configure power, communication, reporting intervals, installation, and integration according to site infrastructure and operational requirements.
More Than Weather Data
Aurassure AWS can operate alongside broader environmental monitoring workflows, helping teams build a more connected understanding of changing conditions across the site.
Build the Right AWS for Your Requirement
Share your application, monitoring parameters, accuracy requirements, site conditions, connectivity, and integration needs with our team.
Automatic Weather Station FAQs
Find answers about AWS selection, weather parameters, installation, connectivity, data access, accuracy, standards, maintenance, and Aurassure AWS configurations.
What is an Automatic Weather Station?
An Automatic Weather Station is a connected monitoring system that measures local meteorological conditions automatically and records or transmits the data for continuous analysis.
Depending on its configuration, an AWS can monitor temperature, relative humidity, atmospheric pressure, wind speed, wind direction, rainfall, solar radiation, soil conditions, ultraviolet exposure, and other environmental parameters.
What is the difference between AWS Lite, AWS Pro, and AWS Expert?
The three Aurassure AWS configurations are designed for different levels of weather monitoring.
AWS Lite focuses on practical hyperlocal weather visibility. AWS Pro expands monitoring with ultrasonic wind, enhanced rainfall, solar irradiance, soil measurements, and tilt. AWS Expert provides higher performance wind measurement and professional irradiance capability for demanding applications.
Which weather parameters can an Aurassure AWS monitor?
The available parameters depend on the selected configuration and project requirements.
Final sensor combinations are selected according to the monitoring objective, required accuracy, standards expectations, and site conditions.
How do I choose the right Automatic Weather Station?
Start by defining what decisions the weather data will support. Then identify the required parameters, measurement range, accuracy, reporting frequency, connectivity, installation environment, standards requirements, and digital integration needs.
A general site monitoring project may begin with AWS Lite, while industrial, infrastructure, agricultural, or solar applications may require AWS Pro. Professional meteorological, research, or higher accuracy applications may require AWS Expert.
Can Aurassure AWS measure solar irradiance?
Yes. Solar monitoring capability depends on the selected AWS configuration.
AWS Pro can be configured for operational solar irradiance measurement, while AWS Expert supports a professional thermopile based configuration for applications requiring higher performance GHI or GTI measurement.
Can the weather station monitor soil conditions?
Yes. Soil moisture and soil temperature can be included where the application requires local soil and microclimate intelligence.
These measurements are particularly relevant for agriculture, irrigation planning, environmental research, landscaping, and other land based monitoring applications.
How can weather station data be accessed?
Weather measurements can be brought into a connected digital environment for remote monitoring through web and mobile interfaces.
Depending on the project scope, users can review live measurements, historical trends, weather forecasts, alerts, and station information from connected locations.
What connectivity options are available for Aurassure AWS?
Connectivity can be selected according to the infrastructure available at the monitoring site. Supported project configurations can include:
The final communication architecture depends on network availability, reporting requirements, and integration needs.
Does Aurassure AWS comply with WMO, IMD, or CEA requirements?
Standards alignment should be evaluated parameter by parameter and configuration by configuration . The different AWS models use different levels of instrumentation, so one blanket compliance statement should not be applied across every measurement.
AWS Expert provides the strongest standards oriented configuration in the range, particularly for higher performance wind and professional solar measurements. Other parameters may meet, conditionally meet, or fall outside specific referenced requirements.
Does an Automatic Weather Station require calibration and maintenance?
Yes. Long term measurement quality depends on periodic inspection, cleaning, verification, alignment checks, preventive maintenance, and calibration where required.
The maintenance and calibration schedule should reflect the parameters being monitored, the required measurement quality, environmental exposure, and the project specification.
Where should an Automatic Weather Station be installed?
The installation location should represent the environmental conditions that the project intends to measure while reducing interference from buildings, heat sources, obstructions, reflective surfaces, and other local influences.
Sensor height, mast configuration, orientation, shielding, and exposure should be defined according to the selected parameters and measurement objective.
Can Aurassure AWS be integrated with existing digital systems?
Yes. Weather data can be integrated into broader digital and operational workflows where required. Integration requirements can be defined around dashboards, alerts, command platforms, data systems, and API based workflows.
This allows hyperlocal weather information to become part of a broader environmental or operational intelligence system rather than remain isolated in a standalone station.
Still Unsure Which AWS Fits Your Requirement?
Share your application, parameters, site conditions, accuracy expectations, standards requirements, connectivity, and integration needs with our team.
Ready to Build the Right Automatic Weather Station for Your Site?
Tell us what you need to monitor and where the station will be deployed. Our team can help you select the right Aurassure AWS Lite, AWS Pro, or AWS Expert configuration for reliable, hyperlocal weather intelligence.
Success Stories
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Revolutionizing Flood Management
IoT powered solution safeguards Kolkata with Indias first comprehensive city level early warning system.
Breathing New Life into Rajkot
Collaboration with Honeywell in Eye Way project to transform air quality monitoring in the smart city.
Empowering Smart Cities
Aurassure impactful hyperlocal air quality solutions in Bhubaneswar.
Building Resilient Cities
Aurassure role in capacity building for sustainable urban development.
Environmental Monitoring Products
Designed for Precision
A modular ecosystem of environmental intelligence systems engineered for air quality, indoor wellness, flood resilience, and hyperlocal weather monitoring.
Infra
PM2.5 • PM10 • CO₂ • NO₂ • SO₂ • VOCs • Noise • Weather • AI Driven Calibration • Real Time Analytics • Compliance Intelligence • More
Trust
Dust • Noise • Air Quality • Instant Alerts • Compliance Reporting • Public Display • Real Time AQI • Construction Site Intelligence • More
Care
PM2.5 • TVOC • CO₂ • Air Index • Viral Index • Temperature • Humidity • Smart Indoor Monitoring • RESET Certified Intelligence • More
Aqua
Water Level • Rainfall • Wind • Pressure • Flood Alerts • Early Warning System • Urban Flood Intelligence • Real Time Monitoring • More
Weather Station
Wind • GHI & GTI • Soil Moisture • UVI • Rainfall • Temperature • Pressure • Hyperlocal Weather Intelligence • IMD & WMO Compliant • More
Customize
Design a configuration tailored to your sensors site conditions and deployment requirements