This cloud file system is analogous to a NAS ( network addressable storage) unit connected to multiple PCs. 这个云文件系统相当于连接多个PC的NAS(网络可寻址存储)单元。
As much more data is processed so the amount of addressable virtual storage that is available within an execution group becomes more of an issue. 由于处理更多的数据,因此会对执行组中的可寻址虚拟存储量带来更多问题。
64-bit support increases the addressable storage of the broker, and further reduces administrative complexity. 位支持增加的代理的可寻址储存,并且进一步降低了管理的复杂性。
The continuation of an operation from the maximum addressable location in storage to the first addressable location. 从存储器最大可寻址单元返转到第一可寻址单元连续进行的一种操作。
Data, characters, words, or other units which are held specifically addressable in some storage unit are said to be its content. 数据、字符、词或其它保存在某个存储单元中可专门寻址的元素,均可称为是存储单元的内容。
Calculator without addressable storage 不带可编址存储器的计算器
Directly addressable storage common area 可直接寻址存储器公用区
To help solve the above issues, a novel media storage technology based on CAS ( Content Addressable Storage) and content management technology was presented, which was called as mCAS ( media Content Addressable Storage). 为了有助于解决上述问题,我们提出了一个创新的基于CAS(内容寻址存储)和内容管理技术的存储技术,称为mCAS(媒体内容寻址存储)。
MCAS is a novel integrated solution for media content management system and media storage based on CAS ( content addressable storage) and metadata technology. mCAS是一种创新的基于内容寻址存储(CAS)和元数据技术的集成解决方案。
To solve the storage and management problem in media industry, mCAS ( media Content Addressable Storage) was presented. 为了解决媒体存储和内容管理面临的问题,提出了一种新的媒体存储技术&媒体内容寻址存储(mCAS)。
The Content Addressable Network ( CAN) is a method to implement the structured P2P network. CAN realizes the efficient mapping of the file information and its storage location by using Distributed Hash Table ( DHT). 内容寻址网络(ContentAddressableNetworkCAN)是结构化P2P的一种实现方案,它使用分布式哈希表(DHT)实现了文件信息和它的存储位置的映射。
Volume holographic storage has the vast potential to offer high density, high-speed transfer rate, fast data readout rate, and associative content addressable storage. 体全息存储系统具有存储容量大、数据传输率快、存储时间短以及能快速进行图像或图形匹配和内容相关寻址操作的潜力,极有可能成为下一代大容量数据存储方法。