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A droop control based load sharing approach for management of renewable and non-renewable energy resources in a remote power system

机译:基于下垂控制的负载分担方法,用于管理远程电源系统中的可再生和不可再生能源

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Droop control is a load sharing strategy applied in conventional power systems. In this paper, droop control strategy has been adopted for the generators in a remote area power supply (RAPS) system in order to share active and reactive power load based on the rated capacities of the generators. Different characteristics of conventional and inverter-based energy resources make it difficult to share load in proportion to the rated capacities of the generators in a RAPS system. Therefore, this paper investigates the load sharing performance of different combinations of conventional and inverter-based energy resources in RAPS systems. The study scenarios investigated in this study comprised of conventional energy resources, inverter-based energy resources, and both conventional and inverter-based energy resources. Simulation results have illustrated the effectiveness of droop control strategy to share load among conventional and inverter-based energy resources in a RAPS system. Furthermore, due to different characteristics of generators, power sharing performance has impaired, in particular, in RAPS systems consisting of both conventional and inverter-based generators compared to the RAPS systems with generators of the same type.
机译:下垂控制是一种应用于常规电力系统中的负载共享策略。在本文中,偏远地区的电源供应器(RAPS)系统中的发电机采用了下垂控制策略,以便根据发电机的额定容量共享有功和无功功率负载。常规能源和基于逆变器的能源的不同特性使得在RAPS系统中难以按比例分配发电机的额定负荷。因此,本文研究了RAPS系统中常规能源和基于逆变器的能源的不同组合的负载共享性能。本研究中研究的研究方案包括常规能源,基于逆变器的能源以及常规和基于逆变器的能源。仿真结果说明了下降控制策略在RAPS系统的常规能源和基于逆变器的能源之间共享负载的有效性。此外,由于发电机的不同特性,与具有相同类型发电机的RAPS系统相比,特别是在包括传统发电机和基于逆变器的发电机组成的RAPS系统中,功率共享性能受到了损害。

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