Optimal dispatch of multi energy system using power-to-gas technology considering flexible load on user side

Zi LING , Xiu YANG , Zilin LI

Front. Energy ›› 2018, Vol. 12 ›› Issue (4) : 569 -581.

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Front. Energy ›› 2018, Vol. 12 ›› Issue (4) : 569 -581. DOI: 10.1007/s11708-018-0595-6
RESEARCH ARTICLE
RESEARCH ARTICLE

Optimal dispatch of multi energy system using power-to-gas technology considering flexible load on user side

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Abstract

The relation between power-to-gas technology (P2G) and energy interconnection becomes increasingly close. Meanwhile, the participation of flexible load on user side in system optimization has attracted much attention as an efficient approach to relieve the contradiction between energy supply and energy demand. Based on the concept of energy hub, according to its series characteristic, this paper established a generic multi-energy system model using the P2G technology. The characteristic of flexible load on user side was considered and optimal dispatch analysis was made, so as to reduce the cost, to reasonably dispatch the flexible load, to reduce the discharge, to enhance the new energy output, and to increase the power-to-gas conversion efficiency. Finally, a concrete analysis was made on the optimal dispatch result of the multi-energy system using the P2G technology considering flexible load on user side in the calculating example, and optimal dispatch of the system was verified via four different scenarios. The results indicate that cooperative dispatch of multi-energy system using the P2G technology considering flexible load on user side is the most economic, and can make a contribution to absorption of new energy and P2G conversion. In this way, environmental effects and safe and stable operation of the system can be guaranteed.

Keywords

multi-energy system / energy hub / series characteristic / optimal dispatch / flexible load

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Zi LING, Xiu YANG, Zilin LI, , , . Optimal dispatch of multi energy system using power-to-gas technology considering flexible load on user side. Front. Energy, 2018, 12(4): 569-581 DOI:10.1007/s11708-018-0595-6

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