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Dispatch of wind-thermal power system containing heat storage units with fast ramping capabilities

机译:调度风电系统,其中包含具有快速升高功能的储热单元

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Wind energy is beneficial both economically and environmentally, while its utilization levels are still far from satisfactory and has plenty of room to be improved. One way to achieve this is to make use of the heat storage in some of the thermal generators to obtain fast ramping capabilities, so that they can catch up with the fluctuating and intermittent wind energy. Output characteristics of such thermal units are distinguished from conventional ones in that their ramping rates are dynamic and with memory, thus new models of system dispatch need to be established. In this paper, we present a mixed integer linear formulation with decisions of thermal unit heat usage for the dispatch of wind-thermal power systems containing heat storage units, and network security constraints of power balance and transmission limits are considered. Numerical tests are performed for a 3-bus system and the IEEE 30-bus system by using CPLEX, and results show that additional ramping capabilities from heat storage units lead to substantial improvements in wind power utilization.
机译:风能在经济和环境中都有益,而其利用水平仍然远非令人满意,并且有足够的空间得到改善。实现这一目标的一种方法是利用一些热发电机中的蓄热,以获得快速斜坡的能力,从而它们可以赶上波动和间歇的风能。这种热单元的输出特性与传统的速率区分开,因为它们的斜率是动态且存储器,因此需要建立新的系统调度模型。在本文中,我们介绍了一种混合整数线性配方,其具有用于调度包含蓄热单元的风力动力系统的热单元热使用的决定,并且考虑了电力平衡和传输限制的网络安全约束。通过使用CPLEX对3总线系统和IEEE 30-BUS系统执行数值测试,结果表明,来自蓄热单元的额外斜坡能力导致风电利用率的显着提高。

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