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Optimal scheduling of bidirectional energy conversion units in energy and ancillary service markets for system restoration within MCESs

机译:能源和辅助服务市场中双向能量转换单元的最佳调度,以在MCES中进行系统恢复

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摘要

Multi-carrier energy systems (MCESs) can be formed by the integration of various energy infrastructures including power and natural gas systems. The proliferation of bidirectional energy conversion units in an MCES can set the stage for a more resilient and robust system. This study shows how bidirectional energy conversion units and storage devices can be optimally scheduled within an MCES for provision of various regulation services to the grid operator. To that end, a new model is proposed for optimal scheduling of power-to-gas (PtG), gas-fired generation, and gas storage units in an MCES. The model aims to facilitate integration of renewables, utilise gas, and power price arbitrage, provide regulation services to the real-time (RT) market, and contribute to the system restoration. New indices that quantify the contribution of the MCES operator to RT and ancillary service markets are proposed. The proposed model is validated technically and economically by using a test system historical operating data. Numerical results demonstrate that while the proposed model is technically feasible, it also enhances the economic viability of the grid operator.
机译:多载波能源系统(MCES)可以通过整合各种能源基础设施(包括电力和天然气系统)来形成。 MCES中双向能量转换单元的激增可以为建立更具弹性和鲁棒性的系统奠定基础。这项研究表明,如何在MCES中优化调度双向能量转换单元和存储设备,以向电网运营商提供各种调节服务。为此,提出了一种新的模型,用于MCES中的燃气发电(PtG),燃气发电和储气单元的最佳调度。该模型旨在促进可再生能源的整合,利用天然气和电力价格套利,向实时(RT)市场提供监管服务,并有助于系统的恢复。提出了量化MCES运营商对RT和辅助服务市场贡献的新指标。通过使用测试系统的历史运行数据,可以从技术上和经济上对所提出的模型进行验证。数值结果表明,该模型在技术上是可行的,同时也提高了电网运营商的经济可行性。

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