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首页> 外文期刊>International journal of electrical power and energy systems >Improving operational flexibility of combined heat and power system through numerous thermal controllable residents aggregation
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Improving operational flexibility of combined heat and power system through numerous thermal controllable residents aggregation

机译:通过许多热可控居民聚集提高了综合热电系统的操作灵活性

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摘要

Thermal controllable residents possess great potential of thermal inertia to improve the system renewable generation accommodation capability. Nevertheless, a high-dimensional optimization problem with huge computational burden emerges if a large number of small thermal controllable residents are modeled individually. In light of this, a polytope-based inner approximate aggregation approach for thermal controllable residents with heterogeneous parameters is proposed, which can unlock the potential operational flexibility offered by numerous small thermal controllable residents and satisfy their various operational constraints. Moreover, a day-ahead economic dispatch framework for combined heat and power systems coordinating with thermal controllable residents? aggregation and disaggregation processes is proposed to further utilize the thermal controllable residents? flexibility and promote the wind energy accommodation. The object is to reduce the overall operation cost while ensuring users? comfort and diversified system operational constraints. Simulation analyses are conducted on the 14-bus electric system and 7-node district heating system, which substantiate that the proposed approach can efficiently improve the system economy and relieve the wind power curtailment through aggregate management of numerous thermal controllable residents.
机译:热可控居民具有热惯性的巨大潜力,以改善系统可再生于可再生于的收纳能力。然而,如果大量小的热可控居民单独建模,则出现了具有巨大计算负担的高维优化问题。鉴于此,提出了一种具有异质参数的热可控居民的基于多容的内部近似聚集方法,这可以解锁许多小型热可控居民提供的潜在操作灵活性,并满足其各种操作约束。此外,用于组合热量和电力系统的日常经济调度框架,配合热可控居民?建议聚集和分解过程进一步利用热可控居民?灵活性,促进风能住宿。对象是为了减少整体运营成本,同时确保用户?舒适性和多样化的系统运行限制。仿真分析是在14公交车电气系统和7节点区供热系统上进行的,这证明了所提出的方法可以有效地改善系统经济,并通过众多热可控居民的骨料管理缓解风力缩减。

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