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Analogy Between Conventional Grid Control and Islanded Microgrid Control Based on a Global DC-Link Voltage Droop

机译:基于全局直流母线电压降的常规电网控制与孤岛微电网控制的类比

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For islanded microgrids, droop-based control methods are often used to achieve a reliable energy supply. However, in case of resistive microgrids, these control strategies can be rather different to what conventional grid control is accustomed to. Therefore, in this paper, the theoretical analogy between conventional grid control by means of synchronous generators (SGs) and the control of converter-interfaced distributed generation (CIDG) units in microgrids is studied. The conventional grid control is based on the frequency as a global parameter showing differences between mechanical power and ac power. The SGs act on changes of frequency through their $P/f$ droop controller, without interunit communication. For CIDG units, a difference between dc-side power and ac-side power is visible in the dc-link voltage of each unit. Opposed to grid frequency, this is not a global parameter. Thus, in order to make a theoretical analogy, a global measure of the dc-link voltages is required. A control strategy based on this global voltage is presented and the analogy with the conventional grid control is studied, with the emphasis on the need for interunit communication to achieve this analogy. A known control strategy in resistive microgrids, called the voltage-based droop control for CIDG units, approximates this analogy closely, but avoids interunit communication. Therefore, this control strategy is straightforward for implementation since it is close to what control engineers are used to. Also, it has some specific advantages for the integration of renewables in the network.
机译:对于孤岛微电网,通常使用基于下垂的控制方法来实现可靠的能源供应。但是,在电阻性微电网的情况下,这些控制策略可能与常规电网控制习惯不同。因此,本文研究了在传统电网中通过同步发电机(SGs)进行的电网控制与微电网中的转换器接口分布式发电(CIDG)单元的控制之间的理论比喻。传统的电网控制基于频率作为全局参数,该频率表示机械功率和交流功率之间的差异。 SG通过其$ P / f $下垂控制器对频率变化进行操作,而无需进行单元间通信。对于CIDG设备,在每个设备的直流母线电压中可以看到直流侧电源和交流侧电源之间的差异。与电网频率相反,这不是全局参数。因此,为了进行理论上的类比,需要对直流母线电压进行整体测量。提出了基于该全局电压的控制策略,并研究了与常规电网控制的类比,重点是实现这种类比需要进行单元间通信。电阻微电网中的一种已知控制策略,称为CIDG单元的基于电压的下垂控制,可以近似地近似该类比,但避免了单元间的通信。因此,该控制策略易于实施,因为它与控制工程师的习惯非常接近。而且,它对于将可再生能源集成到网络中具有一些特定的优势。

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