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    ESA space technology helps Austrian company energyfamily advance real-time energy management

    Two European Space Agency (ESA) technologies are helping Austrian startup energyfamily support energy communities with real-time energy management.

    By applying ESA-developed data processing solutions, the company can reduce data volumes by up to 85% while enabling greater use of locally generated solar energy.

    Energy communities comprise groups of households, businesses or local authorities. They aim to generate electricity collectively and share and consume it locally. To optimise their solar power consumption, two pieces of information that have virtually been unavailable until now are needed:

    • How much energy is currently being generated?
    • How much energy is currently being consumed?

    Powered by ESA Spark Funding Austria, energyfamily’s ‘flexiCo’ project enables energy flexibility with real-time communication. The solution combines two ESA patents: EP2284769B1, “Method and Apparatus for analysing time series data” and EP2748929B1: “Method, Device and System for compressing time series data”. These technologies support the compression, transmission, storage and analysis of real-time energy consumption and generation data. This benefits energy community users by enabling greater self-consumption of solar power, lower energy costs and more efficient use of battery storage, heat pumps and electric vehicles.

    The challenge: real-time energy data

    Grid operators’ smart meters only provide data the following day, and even then only at low resolution. Conducting their own measurements every two seconds generates huge amounts of data that must be transmitted, stored and analysed.

    What is needed is real-time distributed energy management. “Only when an energy community can see in real time what it is consuming and producing can it truly manage its own consumption. Until now, the necessary data has simply been lacking,” says Lukas Prenner, founder and CEO of energyfamily. His startup is already helping 350 active energy communities, supporting them with everything from establishment to administration and offering them a digital platform for managing their solar power.

    Prenner addresses problems such as the high temporal variability of renewable energy as well as mismatched production and consumption curves. In practice, optimising the balance between consumption and production means battery energy storage systems can be charged to capacity, heat pumps can be controlled efficiently and electric cars can be charged: all at the optimal time when the most energy is available.

    The energyfamily application can be easily accessed via Mobile Phone. Credits: Doris Schwarz-König

    The solution: space technology by ESA

    To achieve this, energyfamily combines two components into a single integrated system. On the hardware side, small smart meter adapters and independent measuring devices are installed. On the software side, a cloud platform aggregates data from all communities, analyses it and provides users with the results.

    To ensure the economic viability of this level of detail, the two ESA patents come into play. “What the ESA has achieved for its satellites is exactly what we need on the ground for the energy transition: lots of sensors, low bandwidth and precise data at all times,” explains Prenner.

    The two patents originate from the world of satellite telemetry. Satellites, like a distributed energy measurement system, constantly produce high-frequency measurement data, but can only transmit a limited amount of data to Earth per second and have limited on-board computing power. ESA has developed efficient methods that can be applied directly to smart meter data precisely for this purpose.

    Data compression will be much more efficient due to an efficient algorithm. It reduces measurement points by up to 85 percent– still more than enough to reconstruct the original data. In turn, data storage will be simplified, meaning that only a small amount of data needs to be stored locally in the smart meter, sensor or cloud. And the anomaly detection process analyses data to identify problems. Users will be informed immediately, for example in the event of a battery energy storage system failure.

    The conclusion: 85% less data

    With these two ESA patents, we have been able to reduce the data footprint by up to 85 percent. This turns a theoretically interesting service into an economically scalable product,” concludes Prenner. Assuming a scale-up to one million users, this equates to annual cloud storage cost savings of several hundreds of thousands of euros per year. Furthermore, anomaly analysis leads to efficiency gains, partly because the self-consumption rate of solar power can be increased, meaning less energy needs to be purchased.

    ‘This project is an excellent example of how space technologies can create value far beyond the space sector. By adapting ESA-developed data processing methods for energy communities, energyfamily demonstrates how know-how from space can help tackle key challenges of the green energy transition’, says Susanne Katzler-Fuchs, representing the ESA Technology Transfer Broker in Austria.


    About ESA Patents

    ESA’s patent portfolio helps transfer technologies developed for space missions into commercial applications. Through licensing, companies can access ESA innovations across a wide range of technology domains and adapt them for new markets and industries.

    Go to ESA patents page

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