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Optimal autonomous microgrid operation: A holistic view

机译:最佳的自主微电网运营:整体视角

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The prospects of incorporating a consumer side load-scheduling algorithm that works in conjunction with the unit commitment problem, which in turn coordinates with real-time load balancer, are discussed in this paper. An integrated framework for an autonomous microgrid with objectives of increasing stability, reliability and economy is proposed. From the microgrid operators' point of view, the load side scheduling helps reduce the stress on the system especially during peak hours thereby ensuring system stability and security. From the consumers' point of view, the dynamic electricity prices within a day, which are a reflection of this time varying stress on the system, encourage them to endorse such a scheme and reduce their bills incurred. The unit commitment problem is run a day in advance to determine generator outputs for the following day. Owing to unpredictable weather conditions, running unit commitment problem in advance does not guarantee planned real-time generation in the microgrid scenario. Such variability in forecasted generation must be handled in any microgrid, while accounting for load demand uncertainties. To address this issue a load side energy management system. and power balance scheme is proposed in this paper. The objective is to ascertain uninterrupted power to critical loads while managing other non-critical loads based on their priorities. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文讨论了结合用户承诺负荷调度算法和单元承诺问题一起工作的前景,该算法又与实时负荷平衡器协调。提出了一种以提高稳定性,可靠性和经济性为目标的自治微电网的集成框架。从微电网运营商的角度来看,负载侧调度有助于减轻系统的压力,尤其是在高峰时段,从而确保系统的稳定性和安全性。从消费者的角度来看,一天之内的动态电价反映了系统时间压力的变化,鼓励他们认可这种方案并减少产生的费用。提前一天运行机组承诺问题,以确定第二天的发电机输出。由于不可预测的天气条件,提前运行机组承诺问题不能保证在微电网方案中计划的实时发电。预测发电量的这种可变性必须在任何微电网中处理,同时还要考虑负荷需求的不确定性。为了解决这个问题,负载侧能量管理系统。提出了功率平衡方案。目的是确定关键负载的不间断电源,同时根据其优先级管理其他非关键负载。 (C)2016 Elsevier Ltd.保留所有权利。

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