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Operation of combined heat and power system with hierarchical heating demand considering high wind power penetration

机译:考虑高风能渗透的分级供热需求的热电联产系统的运行

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With the rapid increasing of wind power, wind curtailment occurs more and more frequently. The increasing Combined Heat and Power (CHP) capacities with restricted operational flexibility are one of the major influencing factors for wind power accommodation. This paper focuses on elaborate formulation of CHP units, considering the hierarchical heating demand and corresponding characteristics, in order to better reveal its operational flexibility. The hierarchical heating demand cannot be replaced among different levels, thus imposing additional constraints on the operation of CHP units. Moreover, a collaborative heat supplying mechanism is proposed. The traditional individual heat demand constraints are relaxed. Instead, the operation of a group of CHP connected into a regional heat network are co-optimized, coordinating their heat status and supply to satisfy the demand of the whole system. This mechanism could further explore the flexibility of CHP. Finally, the aforementioned formulations are integrated into a security constrained unit commitment model, and implemented for numerical analysis under high wind power penetration scenarios.
机译:随着风能的迅速增加,减少风的发生越来越频繁。不断增加的热电联产(CHP)容量和有限的操作灵活性是风能调节的主要影响因素之一。本文集中在精心设计的热电联产机组中,考虑了分层供热需求和相应的特性,以便更好地揭示其运行灵活性。分层供热需求无法在不同级别之间进行替换,因此对CHP单元的运行施加了额外的限制。此外,提出了一种协同供热机制。放宽了传统的个人热量需求约束。取而代之的是,对连接到区域供热网络中的一组热电联产的运行进行优化,以协调其供热状态和供热,从而满足整个系统的需求。这种机制可以进一步探索热电联产的灵活性。最后,将上述公式集成到安全约束的单元承诺模型中,并在高风电渗透情况下实现数值分析。

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