数学的ツールキット
Mathematical Tool Kit (原題)
Kondratenko, Aleksander, Yeh, Sonia, Libertson, Frans, Li, Xiaohui, Hassan, Ghayyur
🤖 gxceed AI 要約
日本語
本報告書は、港湾の電化が電力網に与える影響をシミュレーションする数学的ツールキットを提示し、その評価のための標準化手法を提案する。港湾電化の三段階類型を新たに開発し、内陸港湾の充電インフラ最適配置や岸電の電力負荷特性評価の枠組みを提供する。ドナウ川内陸航路とバレンシア港のケーススタディを通じて、実データに基づく意思決定支援の有効性を示す。
English
This report presents a mathematical toolkit for simulating grid impacts of port electrification and proposes standardized evaluation methodologies. It develops a three-phase typology of port electrification, frameworks for optimal charger placement in inland ports, and grid-ready shore power planning using real-world port-call data. Case studies on the Danube Inland Navigation System and the Port of Valencia demonstrate the toolkit's decision-support value.
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
日本の港湾電化やカーボンニュートラルポート政策に示唆を与える。特に、岸電整備や内陸航路の電化を検討する際の評価手法として参考になる。
In the global GX context
Contributes to global decarbonization of maritime logistics by providing standardized methods for assessing grid impacts of port electrification, relevant to IMO and EU green port initiatives.
👥 読者別の含意
🔬研究者:Provides a novel typology and agent-based modeling framework for port electrification assessment.
🏢実務担当者:Offers tools for planning shore power and charging infrastructure to minimize investment costs.
🏛政策担当者:Highlights the need for standardized definitions and methodologies in port electrification policy.
📄 Abstract(原文)
The deliverable (D5) presents the mathematical toolkit that simulates the grid impacts of electrification in ports and proposes standardized methodologies for their evaluation. Electrification of ports includes developing power supplies for ships, port equipment, and vehicles, together with broader infrastructure and grid capacity to support the adoption of electric transport and the production of e-fuels in ports. The deliverable supports the objectives of Task 2.3, advancing the reliable grid Impact assessment of Zero-Emission Refueling Infrastructure. The objectives include: Developing in-depth case studies to understand the real-world implications of grid impacts caused by electrified ports. Analyzing how infrastructure and fueling needs for zero-emission transport at European ports will affect the distribution grids. Formulating standardized methodologies to evaluate the grid impacts of electrified transport and e-fuel production at European ports. The report demonstrates the following significant outcomes. Despite the pivotal role of port electrification in decarbonizing maritime logistics, there is little consensus on what “port electrification” entails, which hinders port infrastructure planning. The deliverable develops a novel three-phase typology of port electrification, enabling consistent evaluation of decarbonization pathways in integrated port systems by providing clearer, more precise, and unambiguous formulations. Selecting the right methodological foundation is crucial to developing the mathematical toolkit for port electrification assessment, as it defines the boundaries of its future potential. The deliverable provides a detailed assessment of existing approaches to modeling sustainable port infrastructure and shipping and demonstrates the significant potential of agent-based simulation models for real-world decision-making in the changing maritime sector. It also shows that agent-based models are trusted by maritime stakeholders. The deliverable develops a framework to evaluate optimal charger locations for inland ports and the corresponding power supply demands, accounting for variables such as potential new charging stations. This approach aims to minimize investment costs while meeting the physical constraints of the transport and grid systems. The agent-based framework for assessing the inland electric ship charging infrastructure is applied to the in-depth case study of the Danube Inland Navigation System and demonstrates that infrastructure configuration is a primary determinant of the feasibility of shipping electrification. The framework provides significant decision support for the multi-objective assessment of the performance of the battery-powered waterborne transport system, with a focus on infrastructure. In addition to measuring total electricity demand, the deliverable presents a tool for grid-ready shore power planning using real-world port-call data. The tool is demonstrated for power load characterization at the Port of Valencia, where it constructs a high-resolution electrical load profile and characterizes operational shore power demand by vessel category, time, and berth zone, thereby identifying the main drivers of energy use, peak load, ramping stress, and future grid-planning requirements.
🔗 Provenance — このレコードを発見したソース
- Zenodo https://zenodo.org/records/22028838first seen 2026-08-21 04:11:14 · last seen 2026-08-28 04:12:09
🔔 こうした論文の新着を逃したくない方は キーワードアラート に登録(無料・3キーワードまで)。
gxceed は公開メタデータに基づく研究支援データセットです。要約・翻訳・解説は AI 支援で生成されています。 最終的な解釈・検証は利用者が原典資料に基づいて行うことを前提とします。