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Simultanous emergency demand response programming and unit commitment programming in comparison with interruptible load contracts

机译:与可中断的负载合同相比,同时进行紧急需求响应编程和机组承诺编程

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摘要

Different reasons such as power system restructuring, electricity price variation in some hours of a day and growth in the fuel price, have led to more attention to demand response (DR) programmes for consumers. Two important issues in DR programmes are emergency demand response programming (EDRP) and Interruptible/Curtail able (I/C) programme that is utilised as interruptible load contracts (ILC). The EDDR is utilised to decrease the consumption in peak load or critical hours of the day. This occurs by means of customer??s behaviour in response to the incentives. However, the curtailment of voluntarily loads in the critical hours considering the consumer requirements is an action that can be performed in DR. A model has been proposed for EDRP and ILC implementation in the unit commitment (UC) programme. Then, the effect of these two DR programmes have been compared in long-term UC problem with fuel constraints. The proposed methodology has been formulated as a mixed integer linear problem and implemented in GAMS environment. The proposed model is applied to a 6-bus test system and a modified IEEE 118-bus system to demonstrate its effectiveness.
机译:电力系统重组,一天中几个小时的电价变动以及燃料价格上涨等不同原因导致人们更加关注消费者的需求响应(DR)计划。灾难恢复程序中的两个重要问题是紧急需求响应编程(EDRP)和可中断/可编解码(I / C)程序,它们被用作可中断负载合同(ILC)。 EDDR用于减少峰值负载或一天中关键时刻的功耗。这是通过客户响应激励的行为而发生的。但是,考虑到消费者的需求,在关键时段减少自愿装载是可以在灾难恢复中执行的操作。已为单位承诺(UC)计划中的EDRP和ILC实施提出了一个模型。然后,将这两个DR程序的效果在具有燃料约束的长期UC问题中进行了比较。所提出的方法已被公式化为混合整数线性问题,并在GAMS环境中实现。所提出的模型被应用于6总线测试系统和改进的IEEE 118总线系统以证明其有效性。

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