Suntracer KNX sl basic weather station mounted on a building façadeSuntracer KNX sl basic weather station mounted on a building façade

KNX weather stations: Selection criteria

From project requirements to the right solution

At first glance, KNX weather stations often differ only in their technical specifications. In practice, however, the number of features is less important than the specific requirements a project places on weather data acquisition and automatic shading. A detached house has different requirements for a weather station than a hotel, an office building or a complex commercial property.

When selecting a KNX weather station, several criteria therefore need to be considered. In addition to the building type and shading concept, factors such as the number of façades, the required weather data and the local wind conditions all influence which weather station is best suited to a project.

Depending on the project, integrated automation functions such as time schedules or logic functions may also be relevant. This guide focuses on the selection criteria that result from the building, shading concept, required weather data and installation conditions.

The following sections explain the key selection criteria and show which Elsner weather stations are best suited to different project requirements.

Step 1: Analyse the project requirements ►

Step 2: Define the required weather data ►

Step 3: Consider the installation location and conditions ►

Step 4: Choose the right weather station ►

Elsner Elektronik Suntracer KNX pro weather station mounted on a flat roofElsner Elektronik Suntracer KNX pro weather station mounted on a flat roof
Step 1: Understand the project

Analyse the project requirements

Selecting a KNX weather station starts with the project, not the product. Even at an early planning stage, a few key criteria can help define the project requirements. These include the building type, the shading concept and the number of façades. Together, they provide the basis for selecting the right weather station.

This leads to the following questions:

Building type

What type of building is to be automated?

The building type is an important starting point when selecting a KNX weather station. A detached house typically has only a few shading zones and relatively straightforward automation requirements. Office buildings, hotels and public buildings, on the other hand, often require multiple façades to be controlled independently, different occupancy schedules to be taken into account and more sophisticated shading strategies to be implemented. As a result, the requirements for sensor technology, control functions and the number of independently controlled façades vary considerably.

Illustration of different building types for selecting a KNX weather stationIllustration of different building types for selecting a KNX weather station
Shading

What shading concept is planned?

The shading concept determines which weather data is required for the building automation system and how it is evaluated. It is influenced not only by the type of shading systems used, but also by how they are to be controlled. For example, if individual façades are to respond independently, the sun's position is to be taken into account, or different shading strategies are required for office, residential or communal areas, the demands placed on the weather station increase.

The more sophisticated the shading automation, the greater the requirements for sensor technology, control functions and weather data evaluation. The shading concept is therefore one of the most important selection criteria when planning a KNX weather station.

Illustration of automated shading with sun, external venetian blind and weather influencesIllustration of automated shading with sun, external venetian blind and weather influences
Façades

How many façades need to be controlled independently?

The number of façades that need to be controlled independently is one of the key selection criteria when choosing a KNX weather station. Depending on their orientation, façades can be exposed to significantly different levels of sunlight, wind and shading. To ensure that each façade is controlled according to its actual weather conditions, these differences must be taken into account when evaluating the weather data.

Not every weather station supports the same number of independently controlled façades. It is therefore advisable to define at an early planning stage which façades require separate control and whether the building may be extended or additional shading zones added in the future. This makes it easier to select a weather station that meets both the current and future requirements of the project.

Illustration of a building with multiple façades and varying sun exposureIllustration of a building with multiple façades and varying sun exposure
Step 2: Define the required weather data

Identify the weather data your project requires

The choice of a KNX weather station is determined not only by the building and the shading concept, but also by the weather data required. Which measured values are needed for the building automation system depends on the planned automation functions. Only once it has been established which weather data needs to be evaluated can the right weather station be selected.

Weather data

Which weather data is required for the building automation system?

The weather data a KNX weather station needs to provide depends on the automation functions planned for the building. In addition to standard measurements such as wind speed, precipitation, brightness and outdoor temperature, other parameters such as wind direction, humidity, air pressure and the sun's position may also be relevant, depending on the application.

What matters is not the number of available sensors, but whether the weather station provides all the weather data required for the project. For example, if shading is to be controlled according to the sun's position, or if individual façades are to respond differently depending on the wind direction, the corresponding weather data must be available for evaluation. The required weather data should therefore be defined during the planning phase, as it has a significant influence on the choice of the most suitable weather station.

Illustration of different weather data such as wind, rain, temperature and brightnessIllustration of different weather data such as wind, rain, temperature and brightness
GPS & sun position

When are GPS and sun position calculation beneficial?

Whether GPS-based sun position calculation is required depends on how precisely the shading system is to be controlled. For straightforward applications, a single brightness sensor or – for direction-specific control – three brightness sensors are usually sufficient. GPS-based sun position calculation additionally takes the current position of the sun into account, enabling highly accurate shading control based on both the sun's position and the orientation of each façade.

The sun's position is calculated using the date, time and geographical location. This allows each façade to be controlled according to its orientation and the current position of the sun. GPS-based sun position calculation offers significant advantages in terms of comfort, daylight utilisation and energy efficiency, particularly in buildings with multiple façades and where blinds or external venetian blinds feature slat tracking.

Illustration of GPS-based sun position calculation for a KNX weather stationIllustration of GPS-based sun position calculation for a KNX weather station
Step 3: Consider the installation location and conditions

Assess the installation location and conditions

The choice of a KNX weather station is influenced not only by the requirements of the building automation system, but also by the installation location and the surrounding conditions. Factors such as the height of the building, the surrounding environment and local wind conditions can affect the quality of the weather data and should therefore be taken into account during the planning phase.

Installation location

How does the surrounding environment affect the weather station?

The surrounding environment has a significant impact on the conditions under which a weather station operates. While measurements at free-standing buildings are generally straightforward, hillside locations, tall buildings or dense urban development can create updraughts and wind turbulence. Trees and neighbouring buildings may also affect solar exposure. Choosing the appropriate wind measurement technology and GPS-based shading control helps to account for these conditions.

The installation position of the weather station is equally important. Only when installed in a suitable location can wind, precipitation and solar radiation be measured reliably. The surrounding environment should therefore be taken into account when selecting a weather station.

Illustration showing the influence of the surrounding environment on wind and solar exposureIllustration showing the influence of the surrounding environment on wind and solar exposure
Wind measurement

Which wind measurement technology is best suited to your project?

Not every project has the same requirements for wind measurement. Depending on the type of building, the installation conditions and the local wind conditions, different measurement technologies are appropriate.

Mechanical wind measurement is particularly suitable for free-standing detached houses as well as smaller residential and commercial buildings where wind approaches the building horizontally.

Electronic wind measurement offers advantages in more complex building situations, such as hillside locations or conservatories, where wind can rise along the façade.

Ultrasonic wind measurement is recommended when wind conditions for a complex project are to be monitored centrally from a single weather station installed on the roof. In addition to wind speed, it also measures wind direction. Evaluating the wind direction is particularly beneficial for protecting buildings with complex façade layouts.

The choice of the most suitable wind measurement technology therefore depends not only on the size of the building, but above all on the local conditions and the requirements of the shading system.

Comparison of mechanical, electronic and ultrasonic wind measurement technologiesComparison of mechanical, electronic and ultrasonic wind measurement technologies
Step 4: Choose the right weather station class

Select the appropriate weather station

Once you have defined your project requirements, you can match them to the appropriate weather station class. The building type, shading concept, required weather data, installation conditions and the number of independently controlled façades together provide the basis for selecting the most suitable weather station.

Weather station class: HOME

For detached houses and one- to two-storey residential and commercial buildings

The cost-effective solution for standard applications

Suitable for:

  • Free-standing buildings with predominantly horizontal wind exposure
  • Detached houses and small residential or commercial buildings
  • Conventional façade layouts and standard shading solutions

Typical features:

  • Cup anemometer for wind measurement
  • Integrated sensors for sun, wind, rain and temperature
  • Reliable automation for typical residential buildings
  • GPS-based sun position calculation (depending on model)
  • Integrated logic, time scheduling and calendar functions
Windancer 2.0 KNX sec weather station | HOME-class KNX weather station for detached houses and smaller residential buildingsWindancer 2.0 KNX sec weather station | HOME-class KNX weather station for detached houses and smaller residential buildings
Weather station class: HOME+ / COMMERCIAL

For buildings with more advanced shading concepts

Greater flexibility for high-end residential and commercial projects

Suitable for:

  • Buildings where updraughts and/or air turbulence occur along the façades
  • Apartment buildings and larger residential properties
  • Commercial buildings
  • Projects with higher requirements for comfort and shading automation

Typical features:

  • Electronic wind measurement
  • Shading control for up to eight façades (depending on model)
  • Advanced automation functions for sophisticated KNX projects
  • GPS-based sun position calculation (depending on model)
  • Integrated logic, time scheduling and calendar functions
Suntracer KNX sl | HOME+ KNX weather station for advanced residential and commercial projectsSuntracer KNX sl | HOME+ KNX weather station for advanced residential and commercial projects
Weather station class: PROFESSIONAL

For complex building automation projects

Maximum performance for sophisticated building automation

Suitable for:

  • Office, commercial and public buildings
  • Projects requiring centralised weather data acquisition and complex façade layouts
  • Complex KNX installations

Typical features:

  • Ultrasonic wind measurement with wind direction detection
  • Measurement of humidity and air pressure
  • Shading control for up to 12 façades
  • Comprehensive automation functions for demanding building designs and user requirements
  • GPS-based sun position calculation
  • Integrated logic, time scheduling and calendar functions
Suntracer KNX pro | PROFESSIONAL KNX weather station for complex building automationSuntracer KNX pro | PROFESSIONAL KNX weather station for complex building automation
Practical example

Project: Detached house with external venetian blinds on the south and west façades

Starting point:

Two façades are to be shaded independently. The shading system should follow the position of the sun, and the external venetian blinds should retract automatically in strong winds.

This results in the following requirements:

✓ Brightness measurement
✓ Wind measurement
✓ GPS-based sun position calculation
✓ Control of two façades

Recommendation:

A HOME-class weather station is the right choice for this project. It provides the weather data required for automatic shading and reliable weather protection in a detached house.

Conclusion

The best weather station is the one that fits your project

More features do not automatically mean a better solution. Nor can the right weather station be selected based on building size alone. Only by considering the project requirements, shading concept, required weather data and installation conditions together can you determine which weather station will perform reliably. That is why it makes sense to start with the project rather than the product.

Illustration of Windancer KNX weather station in front of a line drawing of a weather station, representing the selection of the right weather stationIllustration of Windancer KNX weather station in front of a line drawing of a weather station, representing the selection of the right weather station
FAQs

Frequently asked questions about selecting KNX weather stations

Is one weather station sufficient for an entire building?

In many projects, a centrally installed weather station provides all the weather data required for the building automation system. However, additional wind sensors may be beneficial for tall buildings, large sites or locations with challenging wind conditions. They detect local variations that cannot be measured reliably from a single installation point. Whether one weather station is sufficient therefore always depends on the building geometry and the project requirements.

When are additional wind sensors useful?

Additional wind sensors are primarily used where wind conditions vary significantly across a building. This may be the case with high-rise buildings, buildings with large differences in height or complex architectural designs. Local wind turbulence or particularly exposed parts of a building may also require additional wind measurement to ensure reliable protection of shading systems.

Can multiple weather stations be combined within one project?

Yes. For larger or more complex projects, it may be beneficial to use multiple weather stations. This allows different parts of a building or different locations to be monitored and controlled independently. Whether this is necessary depends on factors such as the size of the building, the installation conditions and the requirements of the building automation system.

What should be considered when installing a weather station?

The installation location has a significant impact on the quality of the weather data. Wind, rain and brightness sensors should be installed where they are exposed to the elements and free from shading wherever possible. Building overhangs, rooftop structures and neighbouring buildings can affect the measurements and should therefore be taken into account during the planning phase. Following the manufacturer's installation guidelines is essential for reliable weather data acquisition.

Can a KNX shading system be expanded at a later stage?

Yes. If the requirements of a project change – for example, because additional façades need to be automated or further shading functions are required – the weather station does not necessarily need to be replaced. Extension modules such as BX8 KNX allow the shading system to be expanded with additional façades and functions. The required weather, time and location data continues to be provided by the existing weather station via the KNX bus.

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