Angle constraint active management of distribution networks with wind power

L. Ochoa, Douglas H. Wilson
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引用次数: 37

Abstract

Large volumes of wind generation capacity are expected to connect to distribution networks in the coming years. The traditional ‘fit and forget’ approach where all technical limitations are satisfied in any credible operational scenario has significantly reduced the ability of certain networks to integrate more generation capacity as the extra costs are not viable for most wind farm developers. In this context, it is envisaged that the true potential of distribution networks to accommodate large renewable generation capacities will only be realised by applying active network management schemes. Here, it is proposed the innovative use of synchrophasor technology to actively manage wind power generation output in congested distribution networks, resulting in the connection of more capacity and, hence, the delivery of more energy as opposed to the 'fit and forget' approach. This is achieved by applying an angle-based constraint that is determined according to the network characteristics (i.e., a proxy for thermal limits, voltage limits, etc.) and using minimal communication. Results from a radial test feeder considering two wind farms demonstrate the effectiveness of the technique in exporting more energy, although at expense of smaller capacity factors, whilst keeping the system secure.
风电配电网角度约束主动管理
未来几年,预计将有大量的风力发电能力连接到配电网。传统的“适应和忘记”方法在任何可靠的操作场景中都满足所有技术限制,这大大降低了某些网络整合更多发电容量的能力,因为额外的成本对大多数风电场开发商来说是不可行的。在这种情况下,可以设想,只有通过应用主动网络管理方案,才能实现配电网络容纳大型可再生能源发电能力的真正潜力。在这里,我们提出了创新地使用同步相量技术来积极管理拥挤的配电网络中的风力发电输出,从而连接更多的容量,从而提供更多的能量,而不是“适应和忘记”的方法。这是通过应用基于角度的约束来实现的,该约束是根据网络特性确定的(例如,热限制、电压限制等的代理),并使用最少的通信。考虑两个风电场的径向馈线测试结果表明,该技术在输出更多能量方面是有效的,尽管以较小的容量因素为代价,同时保持系统安全。
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