Presentation 2014-03-06
Store-carry-forward method for energy supply at the time of a disaster and its routing algorithm
Taiki YAMAMURA, Hiroyoshi MIWA,
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Abstract(in English) The rapid restoration of lifeline after a disaster is one of the top priority for disaster countermeasure, as it was recognized again by the Great East Japan Earthquake. Especially, if electricity supply stops, a great deal of trouble occurs in the shelter life and civic life in the affected areas, leading to disease progression of victims in medical institutions. Therefore, electricity supply is recovered relatively quickly in a disaster so far; however, more rapid restoration of electricity supply is required. Even if electricity supply is broken off in large-scale wide-area disaster such as earthquake, electric generation plant and storage facilities could have escaped the damage. In addition, there is no possibility that the whole of a road network is not impassable. Thus, we propose a store-carry-forward electricity supply method such that an electric vehicle (EV) and a plug-in hybrid vehicles (PHV) having a storage facilities deliver electricity from an electric generation plant to the points of demand such as medical institutions. The rapid restoration of electricity supply can be achieved by this method. In this paper, we propose the store-carry-forward electricity supply method and evaluate the method by simulation.
Keyword(in Japanese) (See Japanese page)
Keyword(in English) Store-carry-forward electricity supply method / Store-carry-forward routing / Challenged network / DTN / Electric vehicle / Electricity supply
Paper # IN2013-144
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Committee IN
Conference Date 2014/2/27(1days)
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Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Store-carry-forward method for energy supply at the time of a disaster and its routing algorithm
Sub Title (in English)
Keyword(1) Store-carry-forward electricity supply method
Keyword(2) Store-carry-forward routing
Keyword(3) Challenged network
Keyword(4) DTN
Keyword(5) Electric vehicle
Keyword(6) Electricity supply
1st Author's Name Taiki YAMAMURA
1st Author's Affiliation Kwansei Gakuin University()
2nd Author's Name Hiroyoshi MIWA
2nd Author's Affiliation Kwansei Gakuin University
Date 2014-03-06
Paper # IN2013-144
Volume (vol) vol.113
Number (no) 473
Page pp.pp.-
#Pages 6
Date of Issue