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Modelling elements of Smart Grids - Enhancing the OSeMOSYS (Open Source Energy Modelling System) code

机译:智能电网的建模元素-增强OSeMOSYS(开源能源建模系统)代码

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摘要

'Smart Grids' are expected to help facilitate a better integration of distributed storage and demand response options into power systems and markets. Quantifying the associated system benefits may provide valuable design and policy insights. Yet many existing energy system models are not able to depict various critical features associated with Smart Grids in a single comprehensive framework. These features may for example include grid stability issues in a system with several flexible demand types and storage options to help balance a high penetration of renewable energy. Flexible and accessible tools have the potential to fill this niche. This paper expands on the Open Source Energy Modelling System (OSeMOSYS). It describes how 'blocks of functionality' may be added to represent variability in electricity generation, a prioritisation of demand types, shifting demand, and storage options. The paper demonstrates the flexibility and ease-of-use of OSeMOSYS with regard to modifications of its code. It may therefore serve as a useful test-bed for new functionality in tools with wide-spread use and larger applications, such as MESSAGE, TIMES, MARKAL, or LEAP. As with the core code of OSeMOSYS, the functional blocks described in this paper are available in the public domain.
机译:预计“智能电网”将有助于促进将分布式存储和需求响应选项更好地集成到电力系统和市场中。量化相关的系统收益可能会提供有价值的设计和政策见解。然而,许多现有的能源系统模型无法在单个综合框架中描述与智能电网相关的各种关键功能。例如,这些功能可能包括具有多种灵活需求类型和存储选项的系统中的电网稳定性问题,以帮助平衡可再生能源的高渗透率。灵活易用的工具有可能填补这一空白。本文扩展了开源能源建模系统(OSeMOSYS)。它描述了如何添加“功能块”来表示发电的可变性,需求类型的优先级,需求变化和存储选项。本文展示了OSeMOSYS在修改其代码方面的灵活性和易用性。因此,它可以用作具有广泛用途和较大应用程序的工具(如MESSAGE,TIMES,MARKAL或LEAP)中新功能的有用测试平台。与OSeMOSYS的核心代码一样,本文描述的功能块可在公共领域使用。

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