High-availability
systems are capable of working over long durations without any breakdown or
failure. Due to the generation of a large amount of critical data in present
times, high-availability servers are in demand as they offer higher stability,
flexibility, reliability, and speed along with almost zero probability of
system failure. The various hardware and software components in
high-availability servers are specifically designed and thoroughly tested to
serve over extended periods of time. The global high-availability server market
is expected to witness positive growth with the rising demand for these servers
across various end-use industries, where system failures can lead to huge
losses.
High-availability
servers are extensively used across various sectors such as telecommunications,
banking, financial services, and insurance (BFSI), retail, manufacturing,
medical, health care, and public. The demand for high-availability servers from
the BFSI sector is particularly high owing to the growing requirement to store
a large amount of critical data. In terms of operating system,
high-availability servers can be classified into Linux, UNIX, Windows, FreeBSD,
and others including Debian, CentOS, and Fedora. Currently, the demand for
Windows operating system-based high-availability servers is the highest.
On the
basis of availability level, the global high-availability server market has
been segmented into availability level 1, availability level 2, availability
level 3, availability level 4, and availability level 5. These levels are based
on the configuration of servers including storage capacity of HDD, number of
virtual CPUs, and size of Random Access Memory (RAM). The configuration of
high-availability servers varies according to their applications across
different sectors.
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Global High-Availability Server Market: Overview
The
growing adoption of high-availability servers across the banking and financial
services sector has propelled the growth of the global high-availability server
market. In the banking sector, a large amount of confidential and critical data
needs to be stored and accessed round the clock. As a result, high-availability
servers are widely used to ensure the security of data. These high-availability
servers ensure low or almost zero risk of system failure, thereby letting
organizations run their business smoothly without any interruptions in
accessing business applications and data resources. Extensive research
activities dedicated toward the development of advanced and true fault tolerant
infrastructure have further augmented the growth of the market. For data
storage, the redundant array of independent disk (RAID) approach is used widely
in high-availability servers. Furthermore, the storage area network (SAN)
approach has been lately introduced for the effective functioning of
high-availability servers.
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