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Making WOM Codes Decodable Using Short Synchronous WOM Codes

机译:使用短同步WOM代码制作WOM代码可解码

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While some write once memory (WOM) codes are inherently decodable, others require the added knowledge of the current generation in order to successfully decode the state of the memory. If there is no limit on the code length, n, a binary non-decodable t-write WOM code can be made decodable at an insignificant cost in terms of code rate by adding t - 1 cells to store the current generation after replicating the code enough times for the t - 1 cells to be of negligible weight. This justifies the research on non-decodable WOM codes. However, if n is bounded, the t - 1 additional cells may introduce a significant loss in terms of code rate. In this paper, we propose a new method to make non-decodable WOM codes decodable at a lower price when n is bounded. The main idea is to add cells that do not only store the current generation, but also additional data, by using a synchronous (t-1)-write WOM code of length t - 1 or slightly above which does not contain the all-zero codeword. A bound on the rate of a simple family of synchronous WOM codes with n = t is given, as well as very short codes from this family. Better codes are then obtained by local manipulations of these codes. Finally, a construction of synchronous WOM codes with good properties is proposed to reach higher values of t.
机译:虽然一些一次写入存储器(WOM)的代码本身解码,则需要当前一代的增加知识,以便成功解码存储器的状态。如果有通过添加吨上的代码长度没有限制,N,一个二进制不可解码叔写入WOM代码可以在码率方面不显着成本进行解码 - 1个细胞以当前一代存储复制的代码后足够的时间对于T - 1个细胞可忽略不计的重量。这证明了在非解码WOM码的研究。然而,如果n为界,第t - 1个附加单元可引入的编码率方面具有显著损失。在本文中,我们提出了一种新方法,使不可解码WOM码以较低的价格解码当n为界。其主要思想是增加细胞不仅存储当前生成,而且还附加数据,通过使用同步(T-1)-write WOM的长度t代码 - 1或稍高于不含有全零码字。阿结合在一个简单的家庭的同步WOM代码,其中n = t时的速率给出,因为从这个家族以及非常短代码。更好的代码,然后由这些代码的本地操作获得。最后,具有良好性能的同步码WOM的结构,提出了达到吨的更高的值。

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