FGV Repositório Digital
    • português (Brasil)
    • English
    • español
      Acesse:
    • FGV Biblioteca Digital
    • FGV Periódicos científicos e revistas
  • português (Brasil) 
    • português (Brasil)
    • English
    • español
  • Entrar
Ver item 
  •   Página inicial
  • Produção Intelectual em Bases Externas
  • Documentos indexados pela Scopus
  • Ver item
  •   Página inicial
  • Produção Intelectual em Bases Externas
  • Documentos indexados pela Scopus
  • Ver item
JavaScript is disabled for your browser. Some features of this site may not work without it.

Navegar

Todo o repositórioComunidades FGVAutorOrientadorAssuntoTítuloDataPalavra-chaveEsta coleçãoAutorOrientadorAssuntoTítuloDataPalavra-chave

Minha conta

EntrarCadastro

Estatísticas

Ver as estatísticas de uso

Big Data for innovation: The case of credit evaluation using mobile data analyzed by innovation ecosystem lens

Thumbnail
Visualizar/Abrir
2-s2.0-85016177041.pdf (552.9Kb)
Data
2017
Autor
Luvizan, Simone da Silva
Nascimento, Paulo Tromboni de Souza
Yu, Abraham Sin Oih
Metadados
Mostrar registro completo
Resumo
Despite the high expectations about Big Data (BD) innovation potential, academy lacks studies exploring its implications and the process to achieve the announced benefits. This paper aims to help filling this gap, analyzing the case of an innovative credit assessment model, based on behavioral profiles generated over mobile network data. We ponder about the innovative potential of such huge data sets when applied to purposes differing from the ones they were generated for. To this case theoretical lens, we propose a framework where Innovation Ecosystem concepts are articulated by Contextualist elements. We explore this approach as an alternative to study the phenomenon different dimensions. It was useful to highlight that, despite the potential benefits of the solution as an enabling technology for financial inclusion and new business models in credit area, the ecosystem required for such innovation has critical dependencies delaying its progress. The study also revealed strategies used to break the inertia and create a minimum viable footprint (MVF), as a first step to chase its innovation full goals. It shows that the planning of an incremental path can be a good gimmick to deal with dependencies and enable radical change in complex ecosystems. © 2016 Portland International Conference on Management of Engineering and Technology, Inc.
URI
http://hdl.handle.net/10438/25586
Coleções
  • Documentos indexados pela Scopus [663]
Assunto
Big data
Palavra-chave
Ecology
Ecosystems
Innovation
Behavioral profiles
Complex ecosystems
Credit evaluations
Enabling technologies
Financial inclusions
Innovation potential
New business models
Potential benefits
Big data

DSpace software copyright © 2002-2016  DuraSpace
Entre em contato | Deixe sua opinião
Theme by 
@mire NV
 

 


DSpace software copyright © 2002-2016  DuraSpace
Entre em contato | Deixe sua opinião
Theme by 
@mire NV
 

 

Importar metadado