US2009199026A1PendingUtilityA1

Saving energy based on storage classes with corresponding power saving policies

Assignee: KIMMEL PETERPriority: Jan 31, 2008Filed: Dec 15, 2008Published: Aug 6, 2009
Est. expiryJan 31, 2028(~1.5 yrs left)· nominal 20-yr term from priority
G06F 1/3203G06F 1/325Y02D30/50G06F 1/3268Y02D10/00
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Claims

Abstract

An example of the invention classifies disks drives based on their purpose and associating power-saving policies in multiple classes. The system implements Power On Demand, where a reduced power mode is enabled for every individual component of a storage subsystem. In addition, an embodiment of this invention extends a few power modes used in the prior art and allows almost infinite number of power modes when instructing a disk drive (via its I/O interface such as a SCSI or fibre channel interface) to enter a certain power saving mode. Furthermore, an embodiment of invention teaches a system and methods to save power in a disk system comprising a plurality of disk controllers and a plurality of disk drives, arranged in a plurality of arrays, where each array includes several (e.g., 4-16) disk drives.

Claims

exact text as granted — not AI-modified
1 . A system for saving energy in a storage module, said system comprising:
 disk arrays or storage units; and   power connection;   a first member of said disk arrays or storage units is classified into a first one of storage classes, based on a usage of said first member;   a first power-saving policy is assigned to said first member, based on said first one of said storage classes;   a second power-saving policy is assigned to a second member of said disk arrays or storage units;   wherein said second power-saving policy is different from said first power-saving policy;   based on said first power-saving policy, a multiple-reduced-disk-speeds policy, a full-speed-disk policy, a sleep-mode policy, a standby policy, a periodically-power-on policy, a power-on interval policy, a recovery policy, a redundancy policy, an availability policy, a diagnostic policy, a scrubbing policy, a user-controlled parameters policy, a utilization policy, an un-used disk policy, an on-demand policy, a delay-to-spin policy, an idle-mode policy, a minimum-revolution speed policy, a duty-cycle policy, a low-power mode policy, an on-line storage policy, a near-line storage policy, a spare-drive storage policy, an unload-mode policy, a fully-formatted array policy, a partially-formatted array policy, a fan-speed policy, a temperature policy, a conservation policy, a power-down policy, a percentage-activity policy, and a backup policy, are applied to said first member;   capabilities for said first member are self-optimized, by learning and adapting to usage patterns for said first member; and   automatically, in coordination with other members of said disk arrays or storage units, said first one of said storage classes is switched, to another one of said storage classes, based on said usage patterns for said first member.

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