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Strategy of constructing virtual peaking unit by public buildings' central air conditioning loads for day-ahead power dispatching

机译:利用公共建筑的中央空调负荷构建虚拟调峰机组的日间调度策略

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With the gradually widely usage of the air conditioning (AC) loads in developing countries, the urban power grid load has swiftly increased over the past decade. Especially in China, the AC load has accounted for over 30% of the maximum load in many cities during summer. This paper proposes a scheme of constructing a virtual peaking unit (VPU) by public buildings' cool storage central AC (CSCAC) systems and non-CSCAC (NCSCAC) systems for the day-ahead power network dispatching (DAPND). Considering the accumulation effect of different meteorological parameters, a short term load forecasting method of public building's central AC (CAC) baseline load is firstly discussed. Then, a second-order equivalent thermal parameters model is established for the public building's CAC load. Moreover, the novel load reduction control strategies for the public building's CSCAC system and the public building's NCSCAC system are respectively presented. Furthermore, based on the multiple-rank control strategy, the model of the DAPND with the participation of a VPU is set up. The VPU is composed of large-scale regulated public building's CAC loads. To demonstrate the effectiveness of the proposed strategy, results of a sample study on a region in Nanjing which involves 22 public buildings' CAC loads are described in this paper. Simulated results show that, by adopting the proposed DAPND scheme, the power network peak load in the region obviously decreases with a small enough deviation between the regulated load value and the dispatching instruction of the VPU. The total electricity-saving amount accounts for 7.78% of total electricity consumption of the VPU before regulation.
机译:随着发展中国家空调(AC)负载的逐渐广泛使用,城市电网负载在过去十年中迅速增加。特别是在中国,夏季时,交流负载已占许多城市最大负载的30%以上。本文提出了一种由公共建筑的蓄冷中央空调系统(CSCAC)和非空调系统(NCSCAC)系统组成的虚拟高峰单元(VPU)的方案,用于日前电网调度(DAPND)。考虑到不同气象参数的累积效应,首先讨论了公共建筑中心空调基准负荷的短期负荷预测方法。然后,为公共建筑的CAC负荷建立了二阶等效热参数模型。此外,分别提出了用于公共建筑的CSCAC系统和公共建筑的NCSCAC系统的新颖的减载控制策略。此外,基于多级控制策略,建立了在VPU参与下的DAPND模型。 VPU由大型受管制的公共建筑的CAC负载组成。为了证明所提出策略的有效性,本文描述了在南京一个地区的样本研究结果,该地区涉及22个公共建筑的CAC荷载。仿真结果表明,采用提出的DAPND方案,该区域的电网峰值负荷明显下降,且调整后的负荷值与VPU的调度指令之间的偏差足够小。节电总量占调整前VPU总用电量的7.78%。

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