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首页> 外文期刊>Indian Journal of Science and Technology >Load Sharing by Decentralized Control in an Islanded Inverter-based Microgrid using Frequency Tracking
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Load Sharing by Decentralized Control in an Islanded Inverter-based Microgrid using Frequency Tracking

机译:基于孤岛式逆变器的微电网中分散控制的频率跟踪

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Microgrids have been defined as an efficient and practical concept to cover flaws in traditional power system related to system expansion and renewable energy utilization. By increasing demand energy, the need to generate more electric power is raised. However, the distance between generation centers and consumption centers causes more energy loss in power system and power system expansion is considered costly and to some extent infeasible. In addition, nowadays using renewable energies such as wind energy is inevitable, as a result using power electronic mediums is necessary. Microgrids are mostly preferable because of the ability to perform in islanded mode. In order to have stable-islanded Microgrid, electric loads inside the network should be shared on Voltage Source Converters respect to their nominal capacity. Droop control has been known as a method to share loads in decentralized way, although it has shortcomings. In this paper by introducing novel method named Frequency Tracking and applying that on droop control system, electric loads inside an islanded Microgrid are shared on generation units properly with fast and acceptable dynamics and droop control system is modified. Simulation results in PSCAD are confirmation of proposed system to have stable islanded Microgrid.
机译:微电网已被定义为一种高效实用的概念,可以弥补传统电力系统中与系统扩展和可再生能源利用相关的缺陷。通过增加需求能量,提出了产生更多电力的需求。然而,发电中心和消耗中心之间的距离导致电力系统中更多的能量损失,并且电力系统扩展被认为是昂贵的并且在某种程度上是不可行的。另外,如今不可避免地使用可再生能源,例如风能,因此必须使用电力电子介质。微电网是最可取的,因为它能够以孤岛模式运行。为了拥有稳定的微电网,应在电压源转换器上根据额定容量共享网络内部的电负载。下垂控制尽管有缺点,但也被称为以分散方式分担负载的方法。本文通过介绍一种称为频率跟踪的新方法,并将其应用到下垂控制系统上,将岛状微电网内部的电力负荷以快速且可接受的动力学特性适当地分配到发电单元上,并对下垂控制系统进行了修改。 PSCAD中的仿真结果证实了所提出系统具有稳定的孤岛微电网。

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