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Effectiveness Verification of Energy Storage Systems toward Stable Electricity Supply with 100 Variable Renewable Energy

机译:储能系统对稳定电力供应的有效性验证,100%可变可再生能源

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In this study, we have estimated energy storage capacity to realize stable power output with 100% wind and/or solar in electricity supply system using the actual output data of wind power generation and solar power generation in Japan. We conducted numerical calculation and clarified the battery capacity necessary to compensate for the unstable supply, which is a weak point of VREs, and discussed the concrete solutions and tasks to realize stable supply with 100% VREs systems. We simulated some cases when we use the VREs as a baseload electricity source for the first step of our research. According to the results of numerical experiments, for keeping the constant output 1MW, it is necessary at least about 42 days' worth of battery capacity in the case of the solar power-only generation. In the case of the wind power-only generation, it is necessary at least about 60 days' worth of battery capacity. On the other hands, it was found that the battery capacity can be reduced to about 18 days' worth if the electric power generation of solar power and wind power are integrated with the best mixture ratio which we found.
机译:在这项研究中,我们估计了能量存储能力,以实现日本风发电和太阳能发电的实际输出数据,在电力供应系统中实现稳定的电力输出和电力供应系统。我们进行了数值计算,并阐明了补偿不稳定电源所需的电池容量,这是VRE的弱点,并讨论了使用100%VRES系统实现稳定供应的具体解决方案和任务。我们在我们研究的第一步中使用VRE作为基准电源时,我们模拟了一些情况。根据数值实验的结果,为了保持恒定输出1MW,在太阳能发电的情况下,必须至少约42天的电池容量的价值。在仅风力发电的情况下,必须至少约60天的电池容量。另一方面,如果光太阳能和风力电力的发电与我们发现的最佳混合比集成,电池容量可以减少到约18天的价值。

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