{"metadata":{"_oai":{"id":"oai:ipsj.ixsq.nii.ac.jp:00227402","sets":["6164:6165:7651:11316"]},"path":["11316"],"owner":"44499","recid":"227402","title":["不揮発性FFのエネルギーモデルを用いた間欠動作アプリケーションのエネルギー最小化"],"pubdate":{"attribute_name":"公開日","attribute_value":"2023-08-23"},"_buckets":{"deposit":"506cfcc6-6f78-4d7e-8b1c-70ce9213ffd9"},"_deposit":{"id":"227402","pid":{"type":"depid","value":"227402","revision_id":0},"owners":[44499],"status":"published","created_by":44499},"item_title":"不揮発性FFのエネルギーモデルを用いた間欠動作アプリケーションのエネルギー最小化","author_link":["605760","605759","605761","605767","605758","605756","605766","605764","605768","605765","605769","605762","605757","605763"],"item_titles":{"attribute_name":"タイトル","attribute_value_mlt":[{"subitem_title":"不揮発性FFのエネルギーモデルを用いた間欠動作アプリケーションのエネルギー最小化"},{"subitem_title":"Energy minimization for Intermittent Operation Using an Energy Model of nonvolatile 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PRESTO","subitem_text_language":"en"},{"subitem_text_value":"Shibaura Institute of Technology","subitem_text_language":"en"},{"subitem_text_value":"Sony Semiconductor Solutions Corporation","subitem_text_language":"en"},{"subitem_text_value":"Sony Semiconductor Solutions Corporation","subitem_text_language":"en"},{"subitem_text_value":"Sony Semiconductor Solutions Corporation","subitem_text_language":"en"}]},"item_publisher":{"attribute_name":"出版者","attribute_value_mlt":[{"subitem_publisher":"情報処理学会","subitem_publisher_language":"ja"}]},"publish_status":"0","weko_shared_id":-1,"item_file_price":{"attribute_name":"Billing file","attribute_type":"file","attribute_value_mlt":[{"url":{"url":"https://ipsj.ixsq.nii.ac.jp/record/227402/files/IPSJ-DAS2023037.pdf","label":"IPSJ-DAS2023037.pdf"},"date":[{"dateType":"Available","dateValue":"2025-08-23"}],"format":"application/pdf","billing":["billing_file"],"filename":"IPSJ-DAS2023037.pdf","filesize":[{"value":"16.8 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Bessho","creatorNameLang":"en"}],"nameIdentifiers":[{}]}]},"item_resource_type":{"attribute_name":"資源タイプ","attribute_value_mlt":[{"resourceuri":"http://purl.org/coar/resource_type/c_5794","resourcetype":"conference paper"}]},"item_18_description_7":{"attribute_name":"論文抄録","attribute_value_mlt":[{"subitem_description":"プロセスの微細化は LSI の性能を大きく向上させる一方,トランジスタの漏れ電流を増大させる.LSI が実行するアプリケーションの待機時に,不揮発性(NV)メモリを用いてデータを保持しながらパワーゲーティングにより静的電力を削減する NVPG と呼ばれるエネルギー削減手法は,電源供給源が貧弱なエッジ環境において有効な選択肢であり,我々は NVPG を実現する NVFF の提案・実装・評価を行ってきた.しかし,設計探索段階においてエネルギー最小化の観点から実際に NVFF を選択するか否かの判断を下すためには,NVFF を選択することで生じるオーバーヘッドと NVPG によるエネルギー削減効果を天秤にかけて検討する必要があるが,NVFF 導入の損益分岐点は,実行するアプリケーションに大きく依存すると考えられる.本研究では,独自のエネルギー削減機構を持つ NVFF の実測に基づくエネルギーモデルを用いて,揮発性 FF との比較して NVFF を採用することでエネルギー削減のメリットを享受できる条件範囲を定量的に分析する.","subitem_description_type":"Other"}]},"item_18_biblio_info_10":{"attribute_name":"書誌情報","attribute_value_mlt":[{"bibliographicPageEnd":"242","bibliographic_titles":[{"bibliographic_title":"DAシンポジウム2023論文集"}],"bibliographicPageStart":"235","bibliographicIssueDates":{"bibliographicIssueDate":"2023-08-23","bibliographicIssueDateType":"Issued"},"bibliographicVolumeNumber":"2023"}]},"relation_version_is_last":true,"weko_creator_id":"44499"},"id":227402,"updated":"2025-01-19T12:11:07.972681+00:00","links":{},"created":"2025-01-19T01:26:40.115444+00:00"}