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首页> 外文期刊>International Journal of Integrated Engineering >Distribution Voltage in DC Micro-grid System based Solar PV Topologies Configuration in Sarawak, Malaysia
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Distribution Voltage in DC Micro-grid System based Solar PV Topologies Configuration in Sarawak, Malaysia

机译:基于DC微电网系统的分配电压在马来西亚沙捞越的基于DC微电网系统的太阳能光伏拓扑结构配置

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In the past few decade, longhouse communities in the rural area of Sarawak has been experienced the limitation of electricity supplies. Due to geographic of Sarawak, supply electricity to these rural areas from utility grid through transmission lines also will only results in many losses, the initiation of utilize solar as prime sources is favourable solution. The implementation of DC microgrid system for this area will achieved, as the solar PV system is a DC source to generate electrical supply for appliances in longhouse communities. However, the tropical climate and geographical in Sarawak such as the inconsistent solar radiation, changing temperatures, high humidity and heavy rainfall will be the main restrain to implement solar DC microgrid system. Thus, this paper proposes a comprehensive study about the voltage distribution of DC microgrid configuration in order to investigate system the reliability and efficiency. The configuration of DC micro-grid model has been designed using MATLAB Simulink and an experimental presenting the Simulink also has been developed for validation purposes. The obtained simulation and experimental results confirm that the proposed configuration of the ring system with multiple-sources is more reliable and efficient than radial system with multiple-source configuration in terms of DC voltage distribution at different buses. Thus, the proposed configuration is more reliable according to voltage distribution at each buses.
机译:在过去的几十年里,萨拉瓦克农村龙屋社区经历了电力供应的限制。由于沙捞越的地理,通过输电线路向这些农村电网供电,也只会导致许多损失,作为主要来源的利用太阳能的启动是有利的解决方案。随着太阳能光伏系统是DC源来实现该区域的DC微电网系统的实现,以在漫长社区中产生电气供电的DC源。然而,沙捞越的热带气候和地理等太阳辐射,不断变化的温度,高湿度和大雨将是主要抑制,以实现太阳能直流微电网系统。因此,本文提出了关于DC微电网配置的电压分布的综合研究,以研究系统可靠性和效率。使用MATLAB Simulink设计了DC微电网模型的配置,并且还开发了Simulink的实验性以用于验证目的。所获得的仿真和实验结果证实,具有多源的环系统的建议配置比不同总线的直流电压分布方面具有多源配置的径向系统更可靠且有效。因此,根据每个总线的电压分布,所提出的配置更可靠。

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