blob: f4cd75a0ca4fff62cc80b8af86320ada1ff8dd67 [file] [log] [blame]
(window.webpackJsonp=window.webpackJsonp||[]).push([[453],{1016:function(n,a,e){"use strict";e.r(a);var t=e(68),r=Object(t.a)({},(function(){var n=this,a=n.$createElement,e=n._self._c||a;return e("ContentSlotsDistributor",{attrs:{"slot-key":n.$parent.slotKey}},[e("h1",{attrs:{id:"调查报告"}},[e("a",{staticClass:"header-anchor",attrs:{href:"#调查报告"}},[n._v("#")]),n._v(" 调查报告")]),n._v(" "),e("p",[n._v("Apache IoTDB开始于清华大学软件学院。 IoTDB是用于使用列式存储,数据编码,预计算和索引技术管理大量时间序列数据的数据库。 它具有类似于SQL的界面,每个节点每秒可写入数百万个数据点,并且经过优化,可在数秒内获得数万亿个数据点的查询结果。 它还可以轻松地与Apache Hadoop MapReduce和Apache Spark集成以进行分析。")]),n._v(" "),e("p",[n._v("相关的研究论文如下:")]),n._v(" "),e("ul",[e("li",[e("a",{attrs:{href:"https://dl.acm.org/citation.cfm?id=2983775&dl=ACM&coll=DL",target:"_blank",rel:"noopener noreferrer"}},[n._v("PISA: An Index for Aggregating Big Time Series Data"),e("OutboundLink")],1),n._v(", Xiangdong Huang and Jianmin Wang and Raymond K. Wong and Jinrui Zhang and Chen Wang. CIKM 2016.")]),n._v(" "),e("li",[e("a",{attrs:{href:"https://link.springer.com/chapter/10.1007/978-3-319-96893-3_8",target:"_blank",rel:"noopener noreferrer"}},[n._v("Matching Consecutive Subpatterns over Streaming Time Series"),e("OutboundLink")],1),n._v(", Rong Kang and Chen Wang and Peng Wang and Yuting Ding and Jianmin Wang. APWeb/WAIM 2018.")]),n._v(" "),e("li",[e("a",{attrs:{href:"https://www.semanticscholar.org/paper/KV-match%3A-A-Subsequence-Matching-Approach-and-Time-Wu-Wang/9ed84cb15b7e5052028fc5b4d667248713ac8592",target:"_blank",rel:"noopener noreferrer"}},[n._v("KV-match: A Subsequence Matching Approach Supporting Normalization and Time Warping"),e("OutboundLink")],1),n._v(", Jiaye Wu and Peng Wang and Chen Wang and Wei Wang and Jianmin Wang. ICDE 2019.")])])])}),[],!1,null,null,null);a.default=r.exports}}]);