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Data allocation in MEMS-based mobile storage devices

机译:基于MEMS的移动存储设备中的数据分配

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MEMS-based storage is being developed as a new storage media. Due to its attractive features such as small size, shock resistance, and low-power consumption. MEMS-based storage is anticipated to be widely used for mobile consumer electronics. However, MEMS-based storage has vastly different physical characteristics compared to a traditional disk. First, MEMS storage has thousands of heads that can be activated simultaneously. Second, the media of MEMS storage is a square structure which is different from the platter structure of disks. Third, the size of a physical sector in MEMS storage is an order of magnitude different from that of a conventional disk. This paper presents a new data allocation scheme for MEMS storage that makes use of the aforementioned characteristics. This new scheme considers the parallelism of MEMS storage as well as the seek time of requests on the two dimensional square structure. Simulation studies show that the proposed scheme improves the performance of MEMS storage significantly by exploiting the high parallelism of MEMS storage.
机译:基于MEMS的存储正在被开发为一种新的存储介质。由于其引人注目的特性,例如小尺寸,抗冲击性和低功耗。预计基于MEMS的存储将广泛用于移动消费类电子产品。但是,与传统磁盘相比,基于MEMS的存储具有很大不同的物理特性。首先,MEMS存储具有数千个可以同时激活的磁头。其次,MEMS存储介质是正方形结构,与磁盘的盘片结构不同。第三,MEMS存储中物理扇区的大小与常规磁盘的大小不同。本文提出了一种利用上述特性的新的MEMS存储数据分配方案。该新方案考虑了MEMS存储的并行性以及二维正方形结构上的请求寻找时间。仿真研究表明,该方案通过利用MEMS存储的高度并行性,显着提高了MEMS存储的性能。

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