基于市场的混合系统运行,包括风力涡轮机、太阳能电池、存储设备和可中断负载

S. Pazouki, Mahmoud Reza Haghiafm
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引用次数: 15

摘要

二氧化碳的排放、化石燃料的减少和能源需求的日益增长,给世界能源供应带来了许多新的困难。在过去的二十年中,基于分布式发电的可再生能源(RES)是为了应对市场放松管制,降低污染、提高效率、降低成本和提高可靠性而进行的创新。可再生世代的主要特征是可变性和不确定性。需要新颖的方法来稳健地利用这些资源。储能装置和需求响应方案具有较强的补足可再生能源短板属性的能力。智能技术为智能电网环境下的供需平衡提供了更为顺畅的路径。本文研究了储能与可中断电力负荷服务;分段需求响应方案作为智能电网的重要关键,实现了宝贵资源的充分利用;风能和太阳能在一个创新的混合能源系统。在电力市场环境下,该系统具有丰富的电网间电力交换能力,以实现最低运行成本和最大收益。该方法通过GAMS软件每天24小时在商业负载上实现。研究结果表明,智能电网每小时应智能利用哪些技术来满足电力商业负荷,以实现运行成本最小化和收益最大化。
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Market based operation of a hybrid system including wind turbine, solar cells, storage device and interruptable load
CO2 emission, fossil fuels decrease and progressive growing energy needs have created many new difficulties for energy supply in the world. Renewable energy resources (RES) based on Distributed Generation (DG) are innovated in response to pollution lower, efficiency enhancement, cost reduction and reliability improvement in deregulated market over the past two decades. Renewable generations are principally characterized by variability and uncertainty properties. Novel approaches are necessitated to robustly utilize the resources. Energy storage devices and demand response programs have strong ability to complement the renewable weakness attributes. Intelligent technologies have provided smooth path for balancing demand and supply more than before in smart grid environment. In this paper, energy storages and interruptable electrical load service; subsection of demand response programs as smart grid important keys are applied to entirely utilize the valuable resources; wind and solar in a proposed innovative hybrid energy system. The system has rich capability to exchange electricity between electricity networks in power market environment to profitably achieve minimum cost operation and maximize revenue. The approach is implemented on a commercial load through GAMS software in 24 hours a day. Results approve that what technology should be intelligently exploited to satisfy electrical commercial load in smart electrical power networks at every hour to minimize operation costs and maximize revenue.
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