A Low-Carbon Economic Dispatch Method for Multi-Energy Complementary Microgrids Incorporating Tiered Carbon Trading
段階的炭素取引を組み込んだ多エネ補完型マイクログリッドの低炭素経済運用手法 (AI 翻訳)
Wujie Jiang, Lijun Liu
🤖 gxceed AI 要約
日本語
本論文は、段階的炭素取引を組み込んだ多エネ補完型マイクログリッドの低炭素経済運用手法を提案。風力・太陽光・蓄電池・CHP・電気ボイラー等を統合し、超過排出に累進的コストを課すことで再エネ受入拡大とコスト・排出削減を両立する。福建省の農村ケースでバイオマス活用と累進的炭素価格インセンティブの有効性を示した。
English
This paper proposes a low-carbon economic dispatch method for multi-energy complementary microgrids that incorporates a tiered carbon trading mechanism. The model integrates wind, solar, storage, CHP, electric boilers, and biomass, with progressively higher costs for excess emissions. Case studies in rural Fujian Province show that multi-energy complementarity combined with tiered carbon pricing improves renewable accommodation and reduces both operating costs and carbon emissions, with the biomass-based case performing best.
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
日本のGX政策では、カーボンプライシングと再エネ地域共生が議論される中、本手法はマイクログリッド運用に炭素コストを織り込む際の参考となる。ただし制度設計は中国の排出権取引に基づくため、適用時には調整が必要。
In the global GX context
This paper provides a quantitative template for embedding carbon prices into operational dispatch, illustrating how progressive carbon pricing can drive renewable integration and cost savings. It offers a useful reference for utilities and microgrid operators globally as carbon pricing mechanisms—aligned with TCFD/ISSB transition planning—become more integrated into daily energy management.
👥 読者別の含意
🔬研究者:Offers a replicable modeling framework for integrating tiered carbon trading into multi-energy microgrid dispatch, useful for further research on carbon pricing in energy systems.
🏢実務担当者:Demonstrates how to incorporate carbon costs into daily operational decisions, enabling microgrid operators to reduce both emissions and operating costs.
🏛政策担当者:Shows that progressive carbon pricing can incentivize low-carbon rural energy systems, informing carbon-market design in regions with distributed energy resources.
📄 Abstract(原文)
To support low-carbon rural energy transition, this paper proposes a low-carbon economic dispatch method for a multi-energy complementary microgrid incorporating tiered carbon trading. The system integrates wind power, photovoltaic generation, energy storage, combined heat and power units, electric boilers, gas storage, transferable loads and biomass resources. A tiered carbon trading mechanism is introduced to impose progressively higher costs on excess emissions while rewarding surplus carbon allowances. The dispatch model minimizes daily operating cost under equipment operation, energy balance and carbon trading constraints. Case studies of typical rural cases in Fujian Province, including comparisons among ordinary carbon trading, basic tiered carbon trading and the improved tiered scheme, show that multi-energy complementarity improves renewable energy accommodation and reduces both carbon emissions and operating costs. The "renewable energy + livestock farming + multi-energy complementarity" Case achieves the best overall performance, indicating that biomass utilization and progressive carbon-price incentives can jointly enhance low-carbon economic operation.
🔗 Provenance — このレコードを発見したソース
- semanticscholar https://doi.org/10.1109/mrai70020.2026.11621842first seen 2026-07-31 06:32:53
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