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Survey of Big Data New SQL Database Systems for Real-Time Data Transfer in the Upstream Oil and Gas Industry

机译:大数据新型SQL数据库系统调查,用于上游石油和天然气工业实时数据传输

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In less than a decade, there has been a tremendous evolution in the various storage solutions used to contain wellsite data in the upstream oil and gas industry. Many organizations from wellsite data management providers to the oil and gas operators themselves are moving away from traditional relational database management systems (RDBMS) and towards big data solutions. There are several reasons for this evolution. First, data flow has increased at an unprecedented rate as the number of rigs increase and so has the data frequency rate. Second, the types of data from the sensors and data acquisition systems (DAQ) have also grown. Third, for data analytics that requires high-speed processing, it needs to be received in a timely manner so insights can be drawn for better, faster decision- making. Big Data implementation known as NoSQL databases were proposed to handle conditions where: the data volumes are increasing exponentially, various types of data that are being transmitted or connected from various sources which are substantial for data analytics, and the last is the high-velocity streaming data that requires high-speed processing. Moving in this direction is not without sacrifice. For example, companies adopting NoSQL give up several important factors, for instance, how the database handles transactions from multiple applications. Implementing NoSQL means giving up the benefits of Atomic, Consistent, Isolated and Durable (ACID). NewSQL comes as a promising new solution which offers the same scalable performance as NoSQL for the Online Transaction Processing (OLTP) read-write workloads while still maintaining ACID guarantees for transactions. This paper will investigate, characterize and analyze the list of NewSQL databases in depth and develop comprehensive taxonomy for various critical aspects which come with them. We then will map the requirement of the data storage for handling upstream data to the proposed taxonomy so it can be used as a basis for analyzing each of the databases. At the end, we will predicate and highlight sorted databases which can be recommended for the implementation of next generation wellsite data storage in the upstream oil and gas industry.
机译:在不到十年的十年中,用于在上游石油和天然气工业中遏制井地数据的各种存储解决方案中存在巨大的演变。来自井地数据管理提供商的许多组织到石油和天然气运营商本身正在远离传统的关系数据库管理系统(RDBMS)和大数据解决方案。这种进化有几个原因。首先,随着钻机数量增加等,数据流量以前所未有的速率增加,数据频率率。其次,传感器和数据采集系统(DAQ)的数据类型也生长。第三,对于需要高速处理的数据分析,需要及时接收,因此可以更好地绘制洞察力,更快地决策。提出了称为NoSQL数据库的大数据实现来处理条件:数据卷是指数增长的,正在从各种源传输或连接的各种类型的数据,这些数据是数据分析的实质性,并且最后是高速流需要高速处理的数据。沿着这个方向移动不是没有牺牲。例如,采用NoSQL的公司放弃了多个重要因素,例如,数据库如何处理来自多个应用程序的事务。实施NoSQL意味着放弃原子,一致,分离和耐用(酸)的益处。 NewsQL是一个有希望的新解决方案,它提供与在线事务处理(OLTP)读写工作负载相同的可扩展性能,同时仍然维持交易保证。本文将调查,特征和分析新闻问答数据库的清单深入,并为各种关键方面制定综合分类法。然后,我们将把数据存储的要求映射到将上游数据处理到所提出的分类系统,因此它可以用作分析每个数据库的基础。最后,我们将谓词和突出显示排序数据库,可以建议在上游石油和天然气行业中实现下一代井三数据存储。

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