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    D

    DoCoMo Communications Laboratories Europe GmbH

    企业EST. 2000
    70论文总数
    1,788引用总数

    论文量&引用量时间轴

    机构学者

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    Wolfgang Kellerer
    Wolfgang Kellerer
    Department of Computer Engineering, School of Computation, Information and Technology, Technical University of Munich
    论文:18引用:0H-index:0
    Danny De Vleeschauwer
    Danny De Vleeschauwer
    Bell Labs, Nokia
    论文:8引用:0H-index:0
    Andra Lutu
    Andra Lutu
    Telefonica Research
    论文:8引用:0H-index:0
    Andres Garcia-Saavedra
    Andres Garcia-Saavedra
    NEC Laboratories Europe GmbH
    论文:8引用:0H-index:0
    Marco Gramaglia
    Marco Gramaglia
    Institute IMDEA Networks, Universidad Carlos III de Madrid
    论文:7引用:0H-index:0
    Alexandros Kostopoulos
    Alexandros Kostopoulos
    Athens University of Economics and Business
    论文:6引用:0H-index:0
    Miguel Camelo
    Miguel Camelo
    University of Antwerp - imec
    论文:6引用:0H-index:0
    Lidia Fuentes
    Lidia Fuentes
    Dpto. Lenguajes y Ciencias de la Computaci??n;ETSI Telecomunicaci??n;Universidad de M??laga
    论文:5引用:0H-index:0
    Evangelos A. Kosmatos
    Evangelos A. Kosmatos
    School of Electrical and Computer Engineering, National Technical University of Athens
    论文:5引用:0H-index:0

    论文(70)

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    1The 6G Architecture Landscape - European perspective
    Massod Khorsandi Bahare,Anastasius Gavras,Marco Gramaglia,John Cosmas,Xi Li,Ömer Bulakçı, Arif Ur Rahman,Αλέξανδρος Κωστόπουλος,Agapi Mesοdiakaki,Dimitris Tsolkas,Mårten Ericson,Mauro Boldi,
    2023Zenodo (CERN European Organization for Nuclear Research)(2023)引用:10
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    2DAEMON Deliverable 6.3: Report on Communication, dissemination and exploitation results and updated CoDEP for Y3
    Brendan McAuliffe,Andra Lutu,Xi Li,Andrés García‐Saavedra,Daniel-Jesús Munoz,Lidia Fuentes,Marco Gramaglia,M. Fiore,Ivan Paez,Miguel Camelo,Αλέξανδρος Κωστόπουλος,Danny De Vleeschauwer,
    2023Zenodo (CERN European Organization for Nuclear Research)(2023)
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    3DAEMON Deliverable 5.2: Report on evaluation results and initial proof-of-concept demonstrations
    M. Fiore,Brendan McAuliffe,Andra Lutu,Andrés García Saavedra,Antonio Bazco-Nogueras,Marco Gramaglia,Michail Kalntis,Evangelos Kosmatos,Inmaculada Ayala,Danny De Vleeschauwer,Michele Gucciardo,Αλέξανδρος Κωστόπουλος,
    2023Zenodo (CERN European Organization for Nuclear Research)(2023)
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    4Characterizing Generic POI: A Novel Approach for Discovering Tourist Attractions.
    Hisao Katsumi,Wataru Yamada,Keiichi Ochiai

    With the rapid spread of social networking services (SNS) and social media, tourism has become a more accessible leisure activity. While many tourists visit well-known tourist destinations, the number of tourists visiting lesser-known ones in non-urban or rural areas has been in decline, and the decline has been exacerbating various problems such as economic disparities. Under these circumstances, it is becoming increasingly important to attract tourists to lesser-known areas with few tourism resources, because attracting tourists brings various positive effects to local residents and municipalities. Existing efforts to attract tourists include studies on tourist spot mining, which search a tourist destination for sightseeing spots that are worth visiting but relatively less well known, based on user-generated content about spots on the Web, such as posts on SNS and images on photo-sharing services. However, as they rely on the amount of user-generated content about potential sightseeing spots to be mined, these methods are limited in discovering a new sightseeing spot that is not recognized as a tourist attraction in advance. To address these challenges, we are inspired by an interesting phenomenon: a previously little-known spot that looks similar to a famous place becomes a hot topic on social media, attracting many people and suddenly becoming a popular tourist attraction. In this paper, we call such a spot with a similar appearance to a well-known one, as generic point-of-interest (POI), and we provide a novel concept of discovering new sightseeing spots by computationally finding generic POIs; we give a new perspective of discovering a new tourist attraction by characterizing a commonplace spot that has a similar appearance to a well-known one as a new tourist attraction. We also propose a pipeline implemented for mining generic POIs, where we calculate the similarity between candidate spots of generic POIs and famous sightseeing spots. Furthermore, we evaluate the feasibility of our approach both through human evaluation and through a photo contest on the Web we held with Tourism Shikoku. The results prove that our proposed method can discover new tourist destinations. The primal advantage of our approach is that it gifts new tourism value to a spot with at least a single place photo similar to a famous sightseeing spot, and thus it discovers a new tourist attraction even in areas with a minimal number of user-submitted images. We hope that our novel concept will be the first step in efforts to attract tourists in various regions around the world, enabling utilization of local spots that even the locals may not be aware of.

    2023J Inf Process(2023)
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    5DAEMON Deliverable 4.2: Refined design of intelligent orchestration and management mechanisms
    Lidia Fuentes,Mercedes Amor,Ángel Cañete, M. Fiore, Sergi Alcalá,Sokratis Barmpounakis,Ioannis Chondroulis,Ioannis Belikaidis,Evangelos Kosmatos,Andrés García Saavedra,Josep Xavier Salvat,Miguel Camelo,
    2022Zenodo (CERN European Organization for Nuclear Research)(2022)引用:2
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    合作机构(61)

    慕尼黑工业大学合作论文 8
    诺基亚合作论文 8
    马拉加大学合作论文 8
    Telefonica Research and Development,Telefónica (Spain)合作论文 8
    马德里高等研究院合作论文 8
    Carlos III University of Madrid合作论文 7
    代尔夫特理工大学合作论文 6
    i2CAT合作论文 5
    WINGS ICT Solutions (Greece)合作论文 5
    Hellenic Telecommunications Organization (Greece)合作论文 4

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