電気設備学会 論文誌
Online ISSN : 2433-4472
ISSN-L : 2433-4472
38 巻, 5 号
選択された号の論文の1件中1~1を表示しています
論文
  • 湯淺 一史, 植嶋 美喜, 馬場﨑 忠利
    2018 年 38 巻 5 号 p. 30-38
    発行日: 2018年
    公開日: 2018/11/10
    研究報告書・技術報告書 フリー
    In this paper, we examined the range where the superiority of the DC current power supply system use arises with respect to the minimum storage battery capacity required to secure a constant energy self-consumption rate. As a result, it was found that the DC supply method becomes superior to the AC supply method with a supply-demand balance in which the energy self-consumption rate exceeds 50%. The difference becomes more noticeable as the energy self-consumption rate increases. In addition, the examination results on the power supply system used here showed that about a 19% reduction a year in the battery capacity under the condition that power energy self-consumption is 90% could be expected by introducing DC systems. In this paper, we examined the range where the superiority of the DC current power supply system use arises with respect to the minimum storage battery capacity required to secure a constant energy self-consumption rate. As a result, it was found that the DC supply method becomes superior to the AC supply method with a supply-demand balance in which the energy self-consumption rate exceeds 50%. The difference becomes more noticeable as the energy self-consumption rate increases. In addition, the examination results on the power supply system used here showed that about a 19% reduction a year in the battery capacity under the condition that power energy self-consumption is 90% could be expected by introducing DC systems. In this paper, we examined the range where the superiority of the DC current power supply system use arises with respect to the minimum storage battery capacity required to secure a constant energy self-consumption rate. As a result, it was found that the DC supply method becomes superior to the AC supply method with a supply-demand balance in which the energy self-consumption rate exceeds 50%. The difference becomes more noticeable as the energy self-consumption rate increases. In addition, the examination results on the power supply system used here showed that about a 19% reduction a year in the battery capacity under the condition that power energy self-consumption is 90% could be expected by introducing DC systems.
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