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Improving Controllability of Conventional Power Plants using Voltage Angle Control

机译:使用电压角控制提高传统发电厂的可控性

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In the future, most of the fossil fuel based power plants of today will progressively be replaced by complete inertia-independent systems. Such systems, referred to as slack storage power plants, will consist of power electronic converters and storages in order to store power from renewable sources. However, some of the conventional thermal and hydroelectric power plants of today will remain in operation and act as base power plants in the power grid. In this paper, a method is proposed which will govern the electrical power distribution in a network containing both conventional and the novel storage power plants. All the control principles existing at present involving spinning reserve, primary and secondary control depending on frequency are substituted by a comprehensive angle control of the nodal voltages in the transmission and distribution network. With this control method in place, whenever there is a change in the power requirement of the network, the power plants react instantly with the ones closest to the point of disturbance providing the greatest response. During the excessive power generation from renewables, the storage power plants can boost their power reserve. This allows the conventional power plants to continue operating within permissible thresholds. Not only does this method help to produce more power closer to the point of load demand, reducing the stress on the generators located further away, but it also improves the controllability of conventional power plants leading to lower operational losses.
机译:将来,今天的大多数化石燃料电厂将通过完整的独立系统逐步取代。该系统称为松弛存储电厂,将包括电力电子转换器和存储,以便从可再生源存储电力。然而,今天的一些传统的热电电厂将保持运行,并充当电网中的基本电厂。在本文中,提出了一种方法,该方法将控制包含传统和新型存储电厂的网络中的电力分布。目前涉及纺丝储备,根据频率的初级和二次控制的所有控制原理通过传输和分配网络中的节点电压的综合角度控制来代替。通过这种控制方法到位,每当网络的电力要求发生变化时,发电厂立即反应,与最接近扰动点的最接近的响应。在可再生能源的过度发电期间,存储电厂可以提高其动力储备。这允许传统的发电厂继续在允许的阈值内进行操作。该方法不仅有助于更靠近负载需求的电力,还原距离发电机的压力,但还提高了传统发电厂的可控性,从而降低了操作损失。

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