Clustering patterns in efficiency and the coming-of-age of the cryptocurrency market
The efficient market hypothesis has far-reaching implications for financial trading and market stability. Whether or not cryptocurrencies are informationally efficient has therefore been the subject of intense recent investigation. Here, we use permutation entropy and statistical complexity over sli...
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Published in | Scientific reports Vol. 9; no. 1; p. 1440 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
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05.02.2019
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Abstract | The efficient market hypothesis has far-reaching implications for financial trading and market stability. Whether or not cryptocurrencies are informationally efficient has therefore been the subject of intense recent investigation. Here, we use permutation entropy and statistical complexity over sliding time-windows of price log returns to quantify the dynamic efficiency of more than four hundred cryptocurrencies. We consider that a cryptocurrency is efficient within a time-window when these two complexity measures are statistically indistinguishable from their values obtained on randomly shuffled data. We find that 37% of the cryptocurrencies in our study stay efficient over 80% of the time, whereas 20% are informationally efficient in less than 20% of the time. Our results also show that the efficiency is not correlated with the market capitalization of the cryptocurrencies. A dynamic analysis of informational efficiency over time reveals clustering patterns in which different cryptocurrencies with similar temporal patterns form four clusters, and moreover, younger currencies in each group appear poised to follow the trend of their ‘elders’. The cryptocurrency market thus already shows notable adherence to the efficient market hypothesis, although data also reveals that the coming-of-age of digital currencies is in this regard still very much underway. |
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AbstractList | The efficient market hypothesis has far-reaching implications for financial trading and market stability. Whether or not cryptocurrencies are informationally efficient has therefore been the subject of intense recent investigation. Here, we use permutation entropy and statistical complexity over sliding time-windows of price log returns to quantify the dynamic efficiency of more than four hundred cryptocurrencies. We consider that a cryptocurrency is efficient within a time-window when these two complexity measures are statistically indistinguishable from their values obtained on randomly shuffled data. We find that 37% of the cryptocurrencies in our study stay efficient over 80% of the time, whereas 20% are informationally efficient in less than 20% of the time. Our results also show that the efficiency is not correlated with the market capitalization of the cryptocurrencies. A dynamic analysis of informational efficiency over time reveals clustering patterns in which different cryptocurrencies with similar temporal patterns form four clusters, and moreover, younger currencies in each group appear poised to follow the trend of their ‘elders’. The cryptocurrency market thus already shows notable adherence to the efficient market hypothesis, although data also reveals that the coming-of-age of digital currencies is in this regard still very much underway. Abstract The efficient market hypothesis has far-reaching implications for financial trading and market stability. Whether or not cryptocurrencies are informationally efficient has therefore been the subject of intense recent investigation. Here, we use permutation entropy and statistical complexity over sliding time-windows of price log returns to quantify the dynamic efficiency of more than four hundred cryptocurrencies. We consider that a cryptocurrency is efficient within a time-window when these two complexity measures are statistically indistinguishable from their values obtained on randomly shuffled data. We find that 37% of the cryptocurrencies in our study stay efficient over 80% of the time, whereas 20% are informationally efficient in less than 20% of the time. Our results also show that the efficiency is not correlated with the market capitalization of the cryptocurrencies. A dynamic analysis of informational efficiency over time reveals clustering patterns in which different cryptocurrencies with similar temporal patterns form four clusters, and moreover, younger currencies in each group appear poised to follow the trend of their ‘elders’. The cryptocurrency market thus already shows notable adherence to the efficient market hypothesis, although data also reveals that the coming-of-age of digital currencies is in this regard still very much underway. |
ArticleNumber | 1440 |
Author | Sigaki, Higor Y. D. Perc, Matjaž Ribeiro, Haroldo V. |
Author_xml | – sequence: 1 givenname: Higor Y. D. orcidid: 0000-0003-3820-3789 surname: Sigaki fullname: Sigaki, Higor Y. D. organization: Departamento de Física, Universidade Estadual de Maringá – sequence: 2 givenname: Matjaž orcidid: 0000-0002-3087-541X surname: Perc fullname: Perc, Matjaž email: matjaz.perc@uni-mb.si organization: Faculty of Natural Sciences and Mathematics, University of Maribor, Complexity Science Hub Vienna – sequence: 3 givenname: Haroldo V. orcidid: 0000-0002-9532-5195 surname: Ribeiro fullname: Ribeiro, Haroldo V. organization: Departamento de Física, Universidade Estadual de Maringá |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/30723248$$D View this record in MEDLINE/PubMed |
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Snippet | The efficient market hypothesis has far-reaching implications for financial trading and market stability. Whether or not cryptocurrencies are informationally... Abstract The efficient market hypothesis has far-reaching implications for financial trading and market stability. Whether or not cryptocurrencies are... |
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SubjectTerms | 639/766/530/2795 639/766/530/2801 639/766/530/2804 Digital currencies Efficiency Efficient markets Entropy Humanities and Social Sciences multidisciplinary Science Science (multidisciplinary) |
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Title | Clustering patterns in efficiency and the coming-of-age of the cryptocurrency market |
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