...
首页> 外文期刊>IEEE Transactions on Communications >Construction of Random Input-Output Codes With Moderate Block Lengths
【24h】

Construction of Random Input-Output Codes With Moderate Block Lengths

机译:具有中等块长度的随机输入输出码的构造

获取原文
获取原文并翻译 | 示例
           

摘要

, recently introduced by Sharon and Alrod, is a coding scheme to improve the random input/output performance of flash memories. Multilevel flash memories require, on the average, more than a single read threshold in order to read a single logical . This number is important to be optimized since it sets the read latency of flash memories. An RIO code assumes that pages are stored in cells with levels. The first page is read by applying a read threshold between levels and . Similarly, the second page is read by applying a read threshold between levels and , and so on. As a consequence, if a cell reads as bit 1 for a page (say page ), the cell also reads as bit 1 for all the successive pages (). Therefore, Sharon and Alrod showed that the design of RIO codes is equivalent to the design of . The latter family of codes attracted substantial attention in recent years in order to improve the lifetime of flash memories by allowing writing multiple messages to the memory without the need for an erase operation. In this paper, we notice two important distinctions between RIO codes and WOM codes. While in WOM codes, the messages are r- ceived one after the other and thus are not known all in advance, in RIO codes the information of all logical pages can be known in advance when programming the cells. Even though this knowledge does not improve the maximum sum-rate of RIO codes, it allows the design of efficient high-rate codes with a moderate block length, which do not exist for WOM codes. We also study another family of RIO codes, called here , that allow to find even more efficient codes while allowing to sense more than a single threshold to read some pages.
机译:Sharon和Alrod最近提出的一种编码方案可以提高闪存的随机输入/输出性能。为了读取单个逻辑,平均而言,多层闪存需要一个以上的读取阈值。此数字很重要,因为要设置闪存的读取延迟,因此必须对其进行优化。 RIO代码假定页面按级别存储在单元格中。通过在级别和之间应用读取阈值来读取第一页。同样,通过在级别和之间应用读取阈值来读取第二页,依此类推。因此,如果一个单元读取一个页面(例如page)的第1位,则该单元也将所有连续页面()的位读取为1。因此,Sharon和Alrod证明RIO代码的设计等同于的设计。为了通过允许将多个消息写入存储器而无需擦除操作来提高闪存的寿命,后一种代码家族近年来引起了广泛的关注。在本文中,我们注意到RIO代码和WOM代码之间的两个重要区别。在WOM代码中,消息是一个接一个地被接收的,因此并不是事先都知道的,而在RIO代码中,对单元进行编程时,所有逻辑页的信息都可以事先知道。即使此知识不能提高RIO码的最大和率,也可以设计具有中等块长度的高效高码率,这对于WOM码是不存在的。我们还研究了另一个称为RIO的RIO代码家族,它们可以查找更有效的代码,同时允许感应多个阈值来读取某些页面。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号