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首页> 外文期刊>International journal of electrical power and energy systems >Integrated unit commitment and natural gas network operational planning under renewable generation uncertainty
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Integrated unit commitment and natural gas network operational planning under renewable generation uncertainty

机译:可再生能源发电不确定性下的综合机组承诺和天然气网络运营计划

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摘要

In this paper, we study an important variant of integrated unit commitment problem and gas network in which uncertain renewable energy resources, gas and electricity storage, the capability of line-pack of the gas network (gas stored in the pipeline), and Power to Gas (PtG) are taken into account. The motivation of this paper is to enhance the security of power generation and optimize both electrical and gas network operational cost. Uncertainty of renewable sources in a power system will inevitably increase the power system's dependence on traditional gas power plants. As a result, the uncertainty of renewable sources is transferred to the gas network such that the fluctuations of the gas flow would increase. Gas and electricity storage, the capability of line-pack of gas network and the use of PtG technologies help us to manage the effect of renewable sources on electricity and gas network. Here, we formulate a mixed integer non-linear optimization model to present the integrated unit commitment problem. Given the complexity of the underlying problem, we explore the problem structure and propose a novel reformulation consisting of efficient decomposition and convexification techniques. Compared to existing methods whose quality are sensitive to initial solutions, the proposed model is more flexible and offers significant improvements in solution quality and efficiency. The proposed model is tested on a modified IEEE 24-Bus test system and Belgian 20-node gas system.
机译:在本文中,我们研究了集成单元承诺问题和燃气网络的重要变体,其中不确定的可再生能源,燃气和电力存储,燃气网络的线组能力(存储在管道中的燃气)以及气体(PtG)被考虑在内。本文的目的是增强发电的安全性,并优化电力和天然气网络的运营成本。电力系统中可再生资源的不确定性将不可避免地增加电力系统对传统天然气发电厂的依赖。结果,可再生资源的不确定性被转移到燃气网络,使得气流的波动将增加。天然气和电力存储,天然气网络线束的功能以及PtG技术的使用有助于我们管理可再生资源对电力和天然气网络的影响。在这里,我们制定了一个混合整数非线性优化模型,以提出综合单位承诺问题。考虑到基本问题的复杂性,我们探索了问题的结构,并提出了一种由有效分解和凸化技术组成的新颖公式。与质量对初始解决方案敏感的现有方法相比,所提出的模型更加灵活,并且在解决方案质量和效率方面都有显着提高。该模型在改进的IEEE 24-Bus测试系统和比利时20节点天然气系统上进行了测试。

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