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SYSTEMS ANALYSIS FOR ENERGY SYSTEMS USING AN INTEGRATED MODEL OF GIS AND TECHNOLOGY MODELS

机译:基于GIS和技术模型集成模型的能源系统的系统分析。

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This paper focuses on large-scale renewable electricity production and aims to identify key factors which affect renewable energy popularization, Japan's carbon emissions, energy independence, and system costs. Based on these factors, we will propose a new energy system for an alternative energy era, using a detailed sub-regional electricity technology model, the Japan Multi-regional Transmission (JMRT) model. Intermittency and geographical sensitivity are the two main factors that differentiate renewable electricity from conventional sources. Seasonal and diurnal variations in wind/solar electricity necessitate the use of backup capacity and storage. Furthermore, the most renewable source in Japan - onshore wind - has better potential in regions with low electricity demand. This makes integrating the more or less isolated (10) grids of Japan a very important issue. The JMRT model employs 1 km2 grid GIS information on wind speeds, distances from the nearest road and from electricity grid for a very detailed description of wind potential. This project uses a systems analysis approach, which is the dissection of a system into its component pieces to study how those pieces interact and work together.
机译:本文着眼于大规模的可再生电力生产,旨在确定影响可再生能源普及,日本的碳排放,能源独立性和系统成本的关键因素。基于这些因素,我们将使用详细的次区域电力技术模型,即日本多区域传输(JMRT)模型,为替代能源时代提出一种新的能源系统。间歇性和地理敏感性是使可再生电力与常规电力区别开来的两个主要因素。风/太阳能的季节性和昼夜变化需要使用备用容量和存储。此外,日本最可再生的能源-陆上风能-在电力需求较低的地区具有更大的潜力。这使得集成或多或少的日本孤立(10)网格成为一个非常重要的问题。 JMRT模型采用有关风速,距最近道路和电网的距离的1 km2网格GIS信息,以非常详细地描述风势。该项目使用系统分析方法,该方法是将系统分解为各个组成部分,以研究这些部分如何相互作用和协同工作。

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