With the recent rapid increase in data usage around the world, the data center required for data storage and transmission has been called “electricity-eating hippopotamus”. The power consumed by computers, servers, and storage devices, as well as to operate a cooling device that cools heat generated from equipment, uses a huge amount of power, so the power consumption and operating costs of the server are emerging as a major problem. Global companies with large numbers of data centers, such as Google and Amazon, use large, low-cost x86 servers for their services, accounting for 80% of the data center servers currently operating [1].BRDue to high system prices and high power consumption, there is a move to transform into low-power, optimal-performance servers using ARM processors, which are expanding their share in edge computing and mobile device applications. Until a few years ago, there was a lack of available methods for Arm server, but over the past two to three years, many banders have entered the market, making it easy to purchase ARM servers. All of the released ARM servers are well-performed, relatively inexpensive, and support standard compliance and UEFI.BRARM provides a lot of performance per watt, and design and production costs are being offered to the market at low prices.BRIn this paper, we describe the features and architectures of products that released servers based on the ARM process.
KSP Keywords
ARM Processor, ARM server, Data center, High power, Large numbers, Low-Power, Low-cost, Mobile device application, Operating costs, Performance per watt, Power Consumption
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