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Smart Metering Reloaded - How the Mioty Technology Solves the Challenge of Massive Scalability Demands and Telegrams

NOV
12
2020
12. NOV 2020

Lecture electronica Conferences > Wireless Congress > Session 13: Mioty II

14:50-15:15 h | Virtual

Smart metering reloaded / How the Mioty technology solves the challenge of massive scalability demands and telegrams Author: Hermann Trottler, Diehl Metering and Chairman of the Executive Board MIOTY Alliance In the times of Internet of Things, people, things and sensors are being intelligently networked. This leads to innovations in the field of Smart City and Smart Industry. Especially in a Smart City environment there are many applications that have to be connected by a common technological approach. These applications range from access control, waste disposal, environmental monitoring, traffic management, street lighting, parking management, metering, smoke detectors and much more. To be able to operate these diversivied applications, a IoT technology is needed, which can operate all these different applications in one system. This system must be very robust, efficient, easily accessible but also secure, scalable, reliable and efficient. Most important, it must be suitable for a massive rollout of millions of sensors. These sensors provide different amounts of data in one telegram. Especially in the metering business, transmissions of 200 bytes per telegram represent a challenge to conventional systems. MIOTY solves this problem. Meters from Gas, Water, Heat, Electricity from different suppliers and manufacturers can easily be integrated into a MIOTY system world without any problems. This is possible without having to change the measuring devices, which save existing CAPEX and provide efficiency gains in the OPEX. The presentation will show how it is possible to meet current and future challenges in the fields of Smart Metering and Smart City with Mioty technology. By means of a technology comparison the relevant criteria for a successful application of radio technologies are described.

Subjects: Wireless

Speaker: Hermann Trottler (Diehl Metering GmbH)

Type: Lecture

Speech: English

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Smart metering reloaded / How the Mioty technology solves the challenge of massive scalability demands and telegrams Author: Hermann Trottler, Diehl Metering and Chairman of the Executive Board MIOTY Alliance In the times of Internet of Things, people, things and sensors are being intelligently networked. This leads to innovations in the field of Smart City and Smart Industry. Especially in a Smart City environment there are many applications that have to be connected by a common technological approach. These applications range from access control, waste disposal, environmental monitoring, traffic management, street lighting, parking management, metering, smoke detectors and much more. To be able to operate these diversivied applications, a IoT technology is needed, which can operate all these different applications in one system. This system must be very robust, efficient, easily accessible but also secure, scalable, reliable and efficient. Most important, it must be suitable for a massive rollout of millions of sensors. These sensors provide different amounts of data in one telegram. Especially in the metering business, transmissions of 200 bytes per telegram represent a challenge to conventional systems. MIOTY solves this problem. Meters from Gas, Water, Heat, Electricity from different suppliers and manufacturers can easily be integrated into a MIOTY system world without any problems. This is possible without having to change the measuring devices, which save existing CAPEX and provide efficiency gains in the OPEX. The presentation will show how it is possible to meet current and future challenges in the fields of Smart Metering and Smart City with Mioty technology. By means of a technology comparison the relevant criteria for a successful application of radio technologies are described.

Hermann Trottler

Hermann Trottler

Diehl Metering GmbH

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Hermann Trottler
Hermann Trottler

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Nord-West
ICM
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C4
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C6
B0
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