In-situ blocked force法による空気伝ぱ音を含む騒音レベルの推定(第2報,片持ち矩形平板の放射音解析による推定手法の検証と推定誤差低減手法の提案)
Saved in:
Published in | 日本機械学会論文集 Vol. 86; no. 882; p. 19-00348 |
---|---|
Main Authors | , , |
Format | Journal Article |
Language | Japanese |
Published |
一般社団法人 日本機械学会
2020
|
Subjects | |
Online Access | Get full text |
ISSN | 2187-9761 |
DOI | 10.1299/transjsme.19-00348 |
Cover
Author | 佐藤, 佳宏朗 岩附, 信行 村上, 賢吾 |
---|---|
Author_xml | – sequence: 1 fullname: 村上, 賢吾 organization: 日本精工(株) 技術開発本部 コア技術研究開発センター – sequence: 1 fullname: 佐藤, 佳宏朗 organization: 日本精工(株) 技術開発本部 コア技術研究開発センター – sequence: 1 fullname: 岩附, 信行 organization: 東京工業大学 工学院機械系 |
BookMark | eNpFkUFPGkEUxydGk6L1C_TkF1jd2WVnZ4_GVKUx6aU9b4aZWQURml08eOtCk0Iglpg2jVZKaU1EJQTCQdssevdrjDvgia-gSIOnf957v_d_L_nPgul0Js0BeAXVRahZ1lLWJWkv6e3wRWgpqqpH8RSIaBCbimUi-ALMe14irupIM7BuGhFwG0srXiK7uxBPZeg2ZwtOxqVcdr8J_0LkCiJX6p_9k-3vd0FV-J37WlfkDsLK4-jjfeNgVOabIn8o8hfCb8n9Rtg6GgaFfrOphb86w6DcL36WZV_49X7tLOz9Dv92ZfVmhH69DtufHvcHp3_kz8rk2NhCFktPH7TkyfGgEQi_Me4Pzk_Cy9Zdb19e_XhmvlRkvTAMii_BjENSHp__r3Pg_errdyvrysbbtdjK8oaShJZKFKRDqkGTMYqYgzBjDqaMI51DDg3LhEYUMYIxpJCohCCGoIWRpkIzjkzqcEOfA2_GvkkvSza5_cFN7BB3zyZuNkFT3J5EYGNkY6yNBFr2UxgTiG4R104S_QHLN80i |
ContentType | Journal Article |
Copyright | 2020 一般社団法人日本機械学会 |
Copyright_xml | – notice: 2020 一般社団法人日本機械学会 |
DOI | 10.1299/transjsme.19-00348 |
DeliveryMethod | fulltext_linktorsrc |
Discipline | Engineering |
EISSN | 2187-9761 |
EndPage | 19-00348 |
ExternalDocumentID | article_transjsme_86_882_86_19_00348_article_char_ja |
GroupedDBID | ALMA_UNASSIGNED_HOLDINGS GROUPED_DOAJ JSF KQ8 RJT |
ID | FETCH-LOGICAL-j190a-631c217ddc6df68ddf8cde63e1e15971546da881c1a0aa6d619862017b67cfe53 |
IngestDate | Wed Sep 03 06:27:27 EDT 2025 |
IsDoiOpenAccess | true |
IsOpenAccess | true |
IsPeerReviewed | true |
IsScholarly | true |
Issue | 882 |
Language | Japanese |
LinkModel | OpenURL |
MergedId | FETCHMERGED-LOGICAL-j190a-631c217ddc6df68ddf8cde63e1e15971546da881c1a0aa6d619862017b67cfe53 |
OpenAccessLink | https://www.jstage.jst.go.jp/article/transjsme/86/882/86_19-00348/_article/-char/ja |
ParticipantIDs | jstage_primary_article_transjsme_86_882_86_19_00348_article_char_ja |
PublicationCentury | 2000 |
PublicationDate | 2020 |
PublicationDateYYYYMMDD | 2020-01-01 |
PublicationDate_xml | – year: 2020 text: 2020 |
PublicationDecade | 2020 |
PublicationTitle | 日本機械学会論文集 |
PublicationYear | 2020 |
Publisher | 一般社団法人 日本機械学会 |
Publisher_xml | – name: 一般社団法人 日本機械学会 |
References | Moorhouse, A.T., Elliott, A.S. and Evans, T.A., In situ measurement of the blocked force of structure-borne sound sources, Journal of Sound and Vibration, Vol.325 (2009), pp.679-685. Mas, P., Sas, P. and Wyckaert, K., Indirect force identification based upon impedance matrix inversion: a study on statistical and deterministical accuracy, Proceedings of ISMA19 (1994), pp.1049-1065. Gardonio, P. and Brennan, M.J., Mobility and impedance methods in structural dynamics, Advanced application in acoustics, noise and vibration (2004), pp.389-447. Elliott, A.S., Moorhouse, A.T., Huntley, T. and Tate, S., In-situ source path contribution analysis of structure borne road noise, Journal of Sound and Vibration, Vol.332 (2013), pp.6276-6295. Elliott, A.S. and Moorhouse, A.T., Characterisation of structure borne sound sources from measurement in-situ, Proceedings of Acoustics 2008 Paris (2008), pp.1477-1482. Greenacre, M.J., Singular value decomposition (SVD) and multidimensional analysis, Theory and applications of correspondence analysis, Academic Press (1984), p.344. Young, D. and Texas, A., Vibration of rectangular plates by Ritz method, Transactions of the ASME Journal of Applied Mechanics, Vo.17 (1950), pp.448-453. Klerk, D. and Rixen, D.J., Component transfer path analysis method with compensation for test bench dynamics, Mechanical Systems and Signal Processing, Vol.24 (2010), pp.1693-1710. Suzuki, K., Maruyama, K., Nishida, K. and Watanabe, T., Basics of acoustic engineering, Vibration and acoustics for mechanical engineering, SAIENSU-SHA Co.,Ltd. (1989), pp.152-179 (in Japanese). Martens, T. and Wyckaert, K., Matrix inversion technology for vibro-acoustic modeling applications: practical examples of measurement noise reduction by SVD, Proceedings of ISMA 23 (1998). Sato, Y. and Iwatsuki, N., Estimation of noise radiation including airborne noise using the in-situ blocked force approach (Proposal of an approximate method and its verification using a simple model), Transactions of the JSME (in Japanese), Vol.84, No.865 (2018), DOI:10.1299/transjsme.18-00049. |
References_xml | – reference: Suzuki, K., Maruyama, K., Nishida, K. and Watanabe, T., Basics of acoustic engineering, Vibration and acoustics for mechanical engineering, SAIENSU-SHA Co.,Ltd. (1989), pp.152-179 (in Japanese). – reference: Elliott, A.S. and Moorhouse, A.T., Characterisation of structure borne sound sources from measurement in-situ, Proceedings of Acoustics 2008 Paris (2008), pp.1477-1482. – reference: Moorhouse, A.T., Elliott, A.S. and Evans, T.A., In situ measurement of the blocked force of structure-borne sound sources, Journal of Sound and Vibration, Vol.325 (2009), pp.679-685. – reference: Gardonio, P. and Brennan, M.J., Mobility and impedance methods in structural dynamics, Advanced application in acoustics, noise and vibration (2004), pp.389-447. – reference: Young, D. and Texas, A., Vibration of rectangular plates by Ritz method, Transactions of the ASME Journal of Applied Mechanics, Vo.17 (1950), pp.448-453. – reference: Sato, Y. and Iwatsuki, N., Estimation of noise radiation including airborne noise using the in-situ blocked force approach (Proposal of an approximate method and its verification using a simple model), Transactions of the JSME (in Japanese), Vol.84, No.865 (2018), DOI:10.1299/transjsme.18-00049. – reference: Greenacre, M.J., Singular value decomposition (SVD) and multidimensional analysis, Theory and applications of correspondence analysis, Academic Press (1984), p.344. – reference: Mas, P., Sas, P. and Wyckaert, K., Indirect force identification based upon impedance matrix inversion: a study on statistical and deterministical accuracy, Proceedings of ISMA19 (1994), pp.1049-1065. – reference: Martens, T. and Wyckaert, K., Matrix inversion technology for vibro-acoustic modeling applications: practical examples of measurement noise reduction by SVD, Proceedings of ISMA 23 (1998). – reference: Elliott, A.S., Moorhouse, A.T., Huntley, T. and Tate, S., In-situ source path contribution analysis of structure borne road noise, Journal of Sound and Vibration, Vol.332 (2013), pp.6276-6295. – reference: Klerk, D. and Rixen, D.J., Component transfer path analysis method with compensation for test bench dynamics, Mechanical Systems and Signal Processing, Vol.24 (2010), pp.1693-1710. |
SSID | ssib036258375 ssib016970096 ssib051641555 ssj0002911760 |
Score | 2.1828065 |
SourceID | jstage |
SourceType | Publisher |
StartPage | 19-00348 |
SubjectTerms | Airborne noise Blocked force In-situ blocked force approach Inverse matrix method |
Title | In-situ blocked force法による空気伝ぱ音を含む騒音レベルの推定(第2報,片持ち矩形平板の放射音解析による推定手法の検証と推定誤差低減手法の提案) |
URI | https://www.jstage.jst.go.jp/article/transjsme/86/882/86_19-00348/_article/-char/ja |
Volume | 86 |
hasFullText | 1 |
inHoldings | 1 |
isFullTextHit | |
isPrint | |
ispartofPNX | 日本機械学会論文集, 2020, Vol.86(882), pp.19-00348-19-00348 |
link | http://utb.summon.serialssolutions.com/2.0.0/link/0/eLvHCXMwrV1Lj9xEELai5AIHBCSIt_ZAn5CD249-HNuORyFSOCVSbiN7bEuMxILI7IUDYnaR2FWisIpAiEdIApHYJKtVoj0koAnc-RvOeDen_QtUle0ZrzbiseLiaXfX46uqdrvKanss6y0pdZqp1LEDninbL7LUTrwgsQvt56lMnEGW0G6L98Tp8_6ZC8GFI8fizq6lpVF6cvDJU98rOUxUoQ_iim_J_ofIzoRCB7QhvnCECMPxX8X43UX74vujJdx9DhdjhlsGBzmLBQs9pgMWe5AnMhNSw2VKtQ3okcxoFhoidpiWLPZZGDF9quEKOYs10z0UVXNpl8UB005HoIM0RtFQl9hjJmoaWrc9YYsnRqUqRkYQCKcaYPRQOyKUyGsiUmYcwlGPRTimNFOS-COU1UjkOATqwSTgCk8xQ-yhJkACrQp7-9RrsDYmGocpv4NeMQMIaq4Yrf07Jx40QxDC8EAMSKnxmY5IhUKLmiH1NDlAY5AeEUpi99EuRXJC8Hj4D7pUj8ALdA5irn2ou7UI2QjCA2pEFDOBPgRXYMNF5yAk8Kdo50eNLWRaEJegcGjEo2bPeBuXa05MiimDFzIyAk7TTqMwntOTcYhXESK_pqdeDAq5RfUanFrOGcE9LoVd40xTc8YezQpF5kfdR1uuM1uGWnikF5xkaIqZdmqATfVEaLzr4_USmrcP57c6E6JbLuS70oYEnXfzg8Z99Tqo6r_Kam73-AKg49Wfim3Sx27XgfQEcj9YU0aYhQ4vfpCf3M-_77PvzaLSnxH3leiDdvzhuk9s_ZYI39DsD6FMPOZKyXFn89lP4_a2yoWW-KSiPYeUNVDevGoIuMCqIpg9mnYhAZLCaV4xBMzvHEQMCfsQytd26ytl4-eet55ryugFUyN7wToyTF60nu18XPW49WezOi40q-MCrY7V9tfl-G65vFouX9q5_Vt175vHk2vl-P6T69vl8tXpOgx99mTjKp6ubJYr35Yrd8vxVnVlY7r13d5kdWdz053euL83ubyz9kV1eVyOb-5cvz199NP01-3q2h9I-tXv03ufA__uLz9XP67PlNUiqrVLhGCruvXD7sakHG_U_bt3bk0fbD1-dKV6-P2c5sv16ubq3mTthHW-F5-LTtvNP9fYQyiwElt4fOBymWUDkRVCZVmhBlkuvJznUD5ChHyRJUrxAU-cJBGZ4FoJKMVkKuSgyAPvJevo4oeL-cvWQuHwQhQqTwquIakVqZPm3CmCzE0CD-rHV6yoDkT_o_rzRP3DzJxX_xcpr1nP4GVcP6F-3To6-ngpfwNqtlH6Js3IvwA4f2yz |
linkProvider | ISSN International Centre |
openUrl | ctx_ver=Z39.88-2004&ctx_enc=info%3Aofi%2Fenc%3AUTF-8&rfr_id=info%3Asid%2Fsummon.serialssolutions.com&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Ajournal&rft.genre=article&rft.atitle=In-situ+blocked+force%E6%B3%95%E3%81%AB%E3%82%88%E3%82%8B%E7%A9%BA%E6%B0%97%E4%BC%9D%E3%81%B1%E9%9F%B3%E3%82%92%E5%90%AB%E3%82%80%E9%A8%92%E9%9F%B3%E3%83%AC%E3%83%99%E3%83%AB%E3%81%AE%E6%8E%A8%E5%AE%9A%EF%BC%88%E7%AC%AC2%E5%A0%B1%EF%BC%8C%E7%89%87%E6%8C%81%E3%81%A1%E7%9F%A9%E5%BD%A2%E5%B9%B3%E6%9D%BF%E3%81%AE%E6%94%BE%E5%B0%84%E9%9F%B3%E8%A7%A3%E6%9E%90%E3%81%AB%E3%82%88%E3%82%8B%E6%8E%A8%E5%AE%9A%E6%89%8B%E6%B3%95%E3%81%AE%E6%A4%9C%E8%A8%BC%E3%81%A8%E6%8E%A8%E5%AE%9A%E8%AA%A4%E5%B7%AE%E4%BD%8E%E6%B8%9B%E6%89%8B%E6%B3%95%E3%81%AE%E6%8F%90%E6%A1%88%EF%BC%89&rft.jtitle=%E6%97%A5%E6%9C%AC%E6%A9%9F%E6%A2%B0%E5%AD%A6%E4%BC%9A%E8%AB%96%E6%96%87%E9%9B%86&rft.au=%E6%9D%91%E4%B8%8A%2C+%E8%B3%A2%E5%90%BE&rft.au=%E4%BD%90%E8%97%A4%2C+%E4%BD%B3%E5%AE%8F%E6%9C%97&rft.au=%E5%B2%A9%E9%99%84%2C+%E4%BF%A1%E8%A1%8C&rft.date=2020&rft.pub=%E4%B8%80%E8%88%AC%E7%A4%BE%E5%9B%A3%E6%B3%95%E4%BA%BA+%E6%97%A5%E6%9C%AC%E6%A9%9F%E6%A2%B0%E5%AD%A6%E4%BC%9A&rft.eissn=2187-9761&rft.volume=86&rft.issue=882&rft.spage=19-00348&rft.epage=19-00348&rft_id=info:doi/10.1299%2Ftransjsme.19-00348&rft.externalDocID=article_transjsme_86_882_86_19_00348_article_char_ja |