监测混凝土-聚合物界面材料降解过程的高可用性系统

R. Mysiuk, V. Yuzevych, B. Koman, M. Yasinskyi
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引用次数: 4

摘要

本文考虑了在几个系统之间划分流量以计算混凝土-聚合物界面处材料降解过程的可能性。由于暴露于外部影响和荷载每年都在增加,混凝土和其他构件的折旧对检查至关重要。通常,新解决方案的开发需要时间来实现。此外,通常情况下,在验证一个概念的阶段,客户需要一个旧版本的软件,以便可能返回到原始解决方案。这种方法有助于在某个系统出现故障时保持高可用性。将流量从一个子系统重定向到另一个子系统的可能选择之一可以被认为是子系统之间百分比的随机变化。为了测试流量重定向的可能性,研究人员开发了一种系统,用于在其中一个应用程序关闭时监测混凝土结构元件的缺陷。因此,在现有的重定向解决方案中,有使用web服务或其他负载平衡器的能力,但是开发单独的API将有助于在较低级别绑定代码,并且没有不必要的功能来简化整个系统。因此,对缺陷数据进行处理,可以及时发现和预防结构构件中的各种损伤,使其快速中和。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hign Availability System for Monitoring Material Degradation Processes at the Concrete-polymer Interface
This paper considers the possibility of dividing traffic between several systems for calculating material degradation processes at the concrete-polymer interface. Depreciation of concrete and other elements is crucial to check due to exposure to external influences and loads increases every year. Usually, the development of new solutions takes time to implement. In addition, there are often cases when the client at the stage of proofing a concept needs to have an old version of the software for a possible return to the original solution. This method helps to maintain high availability in case of problems in case of malfunctions in one of the systems. One of the possible options for changing the redirection of traffic from one subsystem to another can be considered a random change in the percentage between subsystems. As a result of research to test the possibilities of traffic redirection is the development of a system for monitoring defects in concrete structural elements when one of the applications is down. Therefore, among the existing solutions for redirection is the ability to use the web service, or other load balancers, but the development of a separate API will help bind code at lower levels and without unnecessary features to simplify the system as a whole. Therefore, data for the processing of data on defects make it possible to timely detect and prevent damage of various kinds in structural elements for their rapid neutralization.
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