GREEN FTTH: ENERGY EFFICIENCY OF ACCESS NETWORKS AND SUSTAINABLE DESIGNS
グリーンFTTH:アクセスネットワークのエネルギー効率と持続可能な設計 (AI 翻訳)
Malik Faisal Ahmad
🤖 gxceed AI 要約
日本語
本レビューは2020~2025年の文献を基に、FTTHのエネルギー効率と持続可能性を分析。FTTHは銅線より優れるが、スリープモードや動的帯域割り当てなどの運用方法に依存する。持続可能な設計には、アーキテクチャ、機器、ソフトウェア、顧客機器、調達政策を統合した全体最適が必要である。
English
This review (2020-2025) synthesizes literature on FTTH energy efficiency and sustainable design. FTTH outperforms copper but depends on operational practices like sleep/doze modes, dynamic bandwidth allocation, and renewable integration. A whole-system view integrating architecture, electronics, software, CPE, and circular procurement is needed.
Unofficial AI-generated summary based on the public title and abstract. Not an official translation.
📝 gxceed 編集解説 — Why this matters
日本のGX文脈において
本論文は、日本の光ファイバー網の高普及率を背景に、FTTHのエネルギー効率向上手法を体系的に整理。日本の通信事業者(NTTなど)の脱炭素戦略や、グリーン調達方針の策定に示唆を与える。
In the global GX context
As broadband demand grows, FTTH energy efficiency is critical for telecom decarbonization globally. This review synthesizes strategies (device-level, network design, circular economy) that align with ISSB/TCFD climate disclosure expectations for the telecom sector. It provides a framework for operators to reduce Scope 1 and 2 emissions from access networks.
👥 読者別の含意
🔬研究者:Provides a structured synthesis of recent FTTH energy efficiency literature, identifying research gaps and future directions for sustainable access network design.
🏢実務担当者:Operators can use the five-theme framework to benchmark and optimize their FTTH deployments for energy efficiency and circularity.
🏛政策担当者:Offers evidence for including access network energy efficiency in telecom sustainability regulations and green procurement guidelines.
📄 Abstract(原文)
Fiber-to-the-home (FTTH) has moved from a capacity upgrade option to a strategic sustainability choice for broadband access. Compared with copper-intensive access networks, FTTH reduces the number of active field elements, lowers maintenance intensity, and creates a better foundation for long-term decarbonization. Yet “green FTTH” is not automatic. As traffic volumes increase, access operators still face rising electricity demand from optical line terminals (OLTs), optical network units (ONUs), customer-premises equipment (CPE), cooling systems, and supporting facilities. This review paper synthesizes literature published between 2020 and 2025 to examine how FTTH and related passive optical access architectures can be designed, operated, and upgraded for higher energy efficiency and broader environmental sustainability. Following a structured review approach, the paper analyzes five themes: comparative energy performance of access architectures; device-level and protocol-level power-saving methods; network design, migration, and resilience strategies; life-cycle and circular-economy considerations; and future directions associated with AI-enabled operations, fixed-mobile convergence, and next-generation PON evolution. The review finds that FTTH, especially GPON- and XGS-PON-based passive architectures, consistently outperforms legacy copper and hybrid alternatives in energy-per-bit and energy-per-subscriber terms when migration is accompanied by copper retirement and careful CPE optimization (Europacable, 2022; World Broadband Association [WBBA], 2024). However, the environmental outcome depends increasingly on operational practices beyond the optical distribution network itself, especially sleep/doze modes, dynamic bandwidth allocation, centralized and simplified architectures, renewable power integration, facility efficiency, repair logistics, and the embodied impacts of equipment manufacturing (Khalili et al., 2020; Lorincz et al., 2025; Telefónica, 2022). The paper concludes that sustainable FTTH design requires a whole-system view in which architecture, electronics, software control, customer equipment, and circular procurement policies are treated as one optimization problem rather than as separate engineering layers.
🔗 Provenance — このレコードを発見したソース
- semanticscholar https://doi.org/10.18623/rvd.v23.5511first seen 2026-05-17 07:47:45 · last seen 2026-05-20 05:35:50
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