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Optimal operation of active distribution systems for maximizing renewable energy usage.

机译:主动配电系统的最佳运行,以最大程度地利用可再生能源。

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The planning methods and operation modes of traditional distribution network are difficult to accommodate the high penetration of distributed energy resources (DERs). Active distribution network (ADN), based on the application of information and communication technology (ICT) and advanced metering infrastructure (AMI), is one of the alternative solutions. This paper proposes a multi-objective optimization method for ADN operation. Analyzing the DG active/reactive power decoupling control ability under the inverter-based interface mode and putting forward an ADN cross-regional energy utilization strategy, a ADN multi-objective optimization dispatching model is established aiming at the minimum of system operation costs, DREG curtailment and the network loss. It is solved with MOHS algorithm. The optimizing model is able to realize comprehensive benefit of ADN operation on the premise of prior utilization of renewable energy. It is suitable for multiple system operators and the relevant results could offer theoretical foundation and experience to the formulation of ADN operation dispatching strategy.
机译:传统配电网的规划方法和运营模式难以适应分布式能源的高渗透率。基于信息和通信技术(ICT)和高级计量基础架构(AMI)应用的主动配电网(ADN)是替代解决方案之一。本文提出了ADN操作的多目标优化方法。分析了基于逆变器接口模式下的DG有功/无功解耦控制能力,提出了ADN跨区域能源利用策略,建立了以系统运行成本最小,DREG降低为目标的ADN多目标优化调度模型。和网络丢失。用MOHS算法解决。该优化模型能够在事先利用可再生能源的前提下实现ADN运行的综合效益。适用于多系统运营商,相关结果可为ADN运营调度策略的制定提供理论依据和经验。

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