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Analyzing sensitivity of power system wind penetration to thermal generation flexibility

机译:分析电力系统风渗透对热产生柔韧性的敏感性

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One promising way to improve renewable energy utilization in power grids is to operate thermal generators flexibly, so that their output levels can better catch up with the fluctuating and intermittent renewable power. In this paper, we analyze the sensitivity of allowable system wind penetration level to thermal generation ramp rates and output bounds in an economic dispatch framework. By using the “100% rule” in linear programming, it is theoretically shown that the allowable wind power levels in the system are subject to an analytical joint constraint coupling all decision periods. Numerical tests on the IEEE 30-bus system are performed to demonstrate the theoretical results.
机译:提高电网中可再生能源利用的有希望的方法是灵活地操作热发电机,以便其输出水平可以更好地追赶波动和间歇性可再生能力。在本文中,我们分析了允许系统风穿透水平对经济调度框架的热生成斜率和输出界限的敏感性。通过使用线性编程中的“100 %规则”,理论上是理论上,系统中的允许风力电量在耦合所有决策时段的情况下涉及分析联合约束。执行IEEE 30总线系统上的数值测试以展示理论结果。

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