智能电网柔性资源光伏与BES混合系统建模与仿真——随机智能电网案例

C. Parthasarathy, H. Hafezi, H. Laaksonen, K. Kauhaniemi
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引用次数: 13

摘要

不断增长的能源需求和可再生能源在发电间歇性较高的电网中的更大渗透,导致对灵活能源的需求。在智能电网中,分布式发电、需求响应、电动汽车等柔性电源在提供频率、电压和功率平衡控制等服务的灵活性方面发挥着主导作用。鉴于目前的技术和经济成熟状态,电池储能系统(BESS)在满足日益增长的电力系统快速、短期灵活性需求方面具有很大的潜力。本文以Sundom智能电网(SSG)为例,研究了混合光伏(PV)阵列和锂离子电池储能系统(BESS)作为柔性能源在中压(MV)网侧的集成。Vaasa,芬兰。Sundom智能电网是基于从网络中流出的能源消耗和发电的实时数据建模的。通过Matlab仿真,验证了电池作为柔性能源在光伏+ BESS混合动力系统中功率平衡柔性应用中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modelling and Simulation of Hybrid PV & BES Systems as Flexible Resources in Smartgrids – Sundom Smart Grid Case
Ever-growing energy needs and larger penetration of renewable energy in the power grids with higher intermittency in power generation cause the need for flexible energy sources. Flexible sources such as distributed generation, demand response, electric vehicles etc. play a dominant role in providing flexibility in services such as frequency, voltage and power balance control in smart grids. Given the present state of technology and economic maturity of battery energy storage systems (BESS), has a lot of potential to fulfill increasing power systems rapid, short-term flexibility needs. In this paper, a case study on hybrid photovoltaic (PV) arrays & lithium ion based BESS as flexible energy sources are integrated in medium voltage (MV) network side in local pilot network, Sundom Smart Grid (SSG). Vaasa, Finland. Sundom Smart grid is modelled based on real time data on energy consumption and generation streamed from network. Role of batteries as a flexible energy source in the PV & BESS hybrid for power balance flexibility application is demonstrated by means of Matlab simulations.
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