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How to Modernize Transmission System Operators’ Data and Analytics Platform – Toolkit: Building a Cyber-Physical Grid for Energy Transition
Download the eBook to gain comprehensive insights into the modernization of data and analytics platforms for Transmission System Operators (TSOs). Access the full PDF version directly on LinkedIn. 🚀
Summary
Building the digital business technology platform is a core aspect of enterprise endeavors to support its digital business transformation and gain a sustainable competitive advantage. The digital business technology platform includes five building blocks: the information systems platform, the customer experience platform, the Internet of Things (IoT) platform, the ecosystem platform, and the data and analytics (D&A) platform. The D&A platform is at the heart of the enterprise digital business technology platform. In many cases, modernizing the traditional D&A platform is one of the essential steps an enterprise should take to build its digital business platform. This will enable its digital business transformation and give it a sustainable competitive advantage.Â
This eBook is intended to help enterprises determine what parts of the existing traditional D&A capabilities need to be added or need to be improved and modernized. It provides conceptual-level reference architectures of traditional and modern D&A platforms. It also explains how these reference architectures can be used (along with the business strategy) to determine what parts of the traditional D&A platform are missing or need to be improved and modernized. Part 1 of this series provides a conceptual-level reference architecture of a traditional D&A platform. Part 2 provides a conceptual-level reference architecture of a modern D&A platform. Parts 3 and 4 explain how these two reference architectures can be used to modernize a traditional D&A platform. They illustrate this by providing an example of a Transmission System Operator (TSO) that modernizes its existing traditional D&A platform to build a cyber-physical grid for Energy Transition. However, the approaches used in this example can be leveraged as a toolkit to implement similar work in other vertical industries such as transportation, defense, petroleum, water utilities, etc.
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