首页> 外文会议>Power systems computation conference;PSCC 2011 Stockholm >DISTRIBUTION LINE STRUCTURE AND GENERATION EFFICIENCY IMPROVEMENT: A CLUSTERED RESIDENTIAL GRID-INTERCONNECTED PV
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DISTRIBUTION LINE STRUCTURE AND GENERATION EFFICIENCY IMPROVEMENT: A CLUSTERED RESIDENTIAL GRID-INTERCONNECTED PV

机译:配电线路的结构和发电效率的改进:集群式住宅互联电网

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In Japan, the target capacity for installed photovoltaic power systems (PV) in 2020 has been set to 28 GW. The PV output (active power) must be suppressed to sustain adequate voltage (within 101 ± 6V), which was established by the Electricity Business Act in Japan, due to voltage increases by inverse power from PV when clustered residential PV systems are grid-interconnected on a distribution line, even if sufficient irradiance exists. Simulation software was developed to analyze voltage increases when clustered PV were grid-interconnected on a large-scale demonstrative research in Ota City, Japan. From the previous fiscal year, the authors started to research improving whole generation efficiency at a site. We are developing to balance it among all the residences through voltage control, including power conditioning systems of a clustered residential grid-interconnected PV with the developed simulation software. For the subject, we have already demonstrated that 25 percent of the output suppression loss was eliminated with reactive power control when 225 residential PV are grid-interconnected to a simple single distribution line. In this research, a complex single distribution line, where 2160 residential PV are grid-interconnected, is set. We develop suitable voltage control for both simple and complex distribution lines.
机译:在日本,2020年已安装的光伏发电系统(PV)的目标容量已设定为28吉瓦。必须抑制光伏输出(有功功率)以维持足够的电压(在101±6V以内),这是日本《电力商业法》规定的,这是因为当集群式住宅光伏系统并网时,光伏的反向功率会增加电压即使存在足够的辐照度,在配电线路上也是如此。在日本大田市进行的大规模示范性研究中,开发了仿真软件来分析聚光光伏并网时的电压升高。从上一个财政年度开始,作者就开始在现场研究提高整体发电效率的方法。我们正在开发通过电压控制在所有住宅之间实现平衡,包括通过开发的仿真软件对集群式住宅并网光伏发电系统进行功率调节的系统。对于该主题,我们已经证明,当将225个住宅光伏并网连接到一条简单的单条配电线路时,无功功率控制可消除25%的输出抑制损耗。在这项研究中,设置了一条复杂的单一配电线路,其中2160个住宅光伏并网。我们为简单和复杂的配电线路开发合适的电压控制。

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