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Combined Heat and Power Dispatch Based on Integrated Demand Response and Heat Transmission for Wind Power Accommodation

机译:基于集成需求响应和热传递的风电联合热电联产调度

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摘要

The fixed heat-power ratio has limited the flexibility of CHP(combined heat and power) units for wind power accommodation. Multi-energy end-users are the customers who possess electrical load and heat load. The complementation between the two kinds of load enables the end-users to participate in IDR(integrated demand response), which makes the CHP units more flexible. The heat transmission can also promote the flexibility of the CHP units, because it can decouple the real-time balance between the heat output of CHP units and the heat load. Hence, this paper integrates the IDR with the heat transmission and then proposes a combined heat and power dispatch to promote wind power accommodation in IEGM(integrated energy micro-grid). Firstly we formulate a simplified linear model of the complementation between different kinds of load in the end-user. Secondly the annular heat transmission network is formulated by the quasi-dynamics model of the pipeline temperature. Thirdly an IDR bi-level optimal dispatch model is proposed to gain a "win-win" situation between the IEGM operator and end-users. Finally the simulation results verify the positive impacts of the proposed dispatch on wind power accommodation and operational economy.
机译:固定的热电比限制了CHP(热电联产)机组用于风力发电的灵活性。多能量最终用户是拥有电力负荷和热负荷的客户。两种负载之间的互补使最终用户能够参与IDR(集成需求响应),这使CHP单元更加灵活。传热还可以提高CHP单元的灵活性,因为它可以使CHP单元的热量输出和热负荷之间的实时平衡脱钩。因此,本文将IDR与传热集成在一起,然后提出了一种热电联产的方式,以促进IEGM(集成能源微电网)中的风能适应。首先,我们为最终用户中的各种负载之间的互补关系建立了简化的线性模型。其次,利用管道温度的准动力学模型建立了环形传热网络。第三,提出了IDR双层最优调度模型,以实现IEGM运营商与最终用户之间的“双赢”局面。最后,仿真结果验证了拟议的调度对风电适应性和运营经济性的积极影响。

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