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Demand-Side Peer-to-Peer Energy Trading – Springer 2023

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Learn peer-to-peer energy trading with Springer’s 2023 guide. Explore innovative tools for sustainable green energy markets.

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Description

Demandโ€‘Side Peerโ€‘toโ€‘Peer Energy Trading (Green Energy and Technology, 2023)

Demandโ€‘Side Peerโ€‘toโ€‘Peer Energy Trading offers a comprehensive, state-of-the-art reference on peer-to-peer (P2P) and transactive energy systems โ€” covering technology, protocols, implementation, economics, and realโ€‘world applications.

Introduction

Demandโ€‘Side Peer-to-Peer Energy Trading explores how decentralised peer-to-peer and transactive energy can revolutionize the way we produce, trade, and consume energy in the era of renewable and green energy. This book is essential for anyone interested in understanding and implementing modern energy systems built around sharing, sustainability, and smart technologies.

Why This Book Matters

As the global energy landscape moves toward decentralization and decarbonization, traditional centralized gridโ€‘based energy systems are increasingly supplemented (or replaced) by distributed energy, local energy markets, and prosumer-driven models. This book captures that paradigm shift by combining:

  • Technical depth โ€” protocols, blockchainโ€‘based platforms, optimization and control techniques.
  • Practical relevance โ€” real-world case studies and applications worldwide.
  • A multidisciplinary approach โ€” integrating energy systems engineering, economics, computer science, data, and operations research.

Key Themes and Content Overview

The book is structured into multiple chapters offering a layered deep-dive into P2P energy trading and transactive energy systems. Key contents include:

  • An overview of peer-to-peer transactions and transactive energy concepts, including challenges and future outlook. :contentReference[oaicite:1]{index=1}
  • Use cases of P2P energy trading โ€” how communities, microgrids, and prosumers interact in real-world settings. :contentReference[oaicite:2]{index=2}
  • Detailed exposition of blockchain-based transaction platforms enabling decentralized energy trading. :contentReference[oaicite:3]{index=3}
  • Models for competitive hybrid retail & local electricity markets using peer-to-peer trading mechanisms. :contentReference[oaicite:4]{index=4}
  • Optimization-based and decentralized P2P trading frameworks, including robust optimization techniques for prosumer participation. :contentReference[oaicite:5]{index=5}
  • Applications extending beyond electricity โ€” e.g. multi-carrier energy systems, storage integration (battery, hydrogen), and local energy scheduling. :contentReference[oaicite:6]{index=6}

Who Should Read This Book

This book is designed for a broad audience including:

  • Researchers and graduate students working on energy systems, smart grids, renewable energy, and distributed generation.
  • Industry practitioners, engineers and energy system designers interested in implementing or evaluating P2P energy trading systems or microgrids.
  • Policy makers, energy economists and analysts exploring demandโ€‘side energy management, decentralized energy markets, and energy transition strategies.
  • Computer scientists and data/optimization specialists keen on applications of blockchain, distributed optimization, and transactive energy protocols.

Why Itโ€™s Timely

With growing interest worldwide in renewable energy, decentralised grids, and demand-side participation, P2P energy trading offers a viable path toward energy democracy, sustainability, and flexibility. This book captures the most recent developments (2023) in the field, making it a valuable resource for shaping future energy systems and contributing to global decarbonization efforts. :contentReference[oaicite:7]{index=7}

How This Book Can Be Used

You can use this book to:

  • Gain a deep understanding of technical and economic fundamentals of peer-to-peer energy trading and transactive energy.
  • Design or evaluate a P2P energy trading system, microgrid, or local energy market โ€” including protocols, storage integration, and optimization strategies.
  • Explore real-world case studies for inspiration on deployment, regulation, and system integration.
  • Inform or support research work, policy proposals, or industrial design involving decentralized energy systems.

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