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Composition of Semi-LTCs by Two-Wise Tensor Products

机译:两张量张量积构成的半LTC

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摘要

We continue the study of the local testability of error correcting codes constructed by taking the two-wise tensor product of a "base-code" with itself. We show that if the base-code is any locally testable code (LTC) or any expander code, then the code obtained by taking the repeated two-wise tensor product of the base-code with itself is locally testable. This extends the results of Dinur et al. in [11] in two ways. First, we answer a question posed in that paper by expanding the class of allowed base-codes to include all locally testable code, and not just so-called uniform LTCs whose associated tester queries all codeword entries with equal probability. Second, we show that repeating the two-wise tensor operation a constant number of times still results in a locally testable code, improving upon previous results which only worked when the tensor product was applied once.rnTo obtain our results we define a new tester for the tensor product of LTCs. Our tester uses the distribution of the tester associated with the base-code to sample rows and columns of the product code. This construction differs from previously studied testers for tensor product codes which sampled rows and columns uniformly.
机译:我们继续研究通过使用“基码”的双向张量积构成的纠错码的局部可测试性。我们表明,如果基本代码是任何本地可测试代码(LTC)或任何扩展器代码,那么通过采用基本代码与其自身的重复双向张量积获得的代码就可以本地测试。这扩展了Dinur等人的结果。在[11]中有两种方式。首先,我们通过扩展允许的基本代码的类别以涵盖所有本地可测试代码,而不只是所谓的统一LTC(其关联的测试人员以相等的概率查询所有代码字条目)来回答该问题。其次,我们证明了将双向张量运算重复执行恒定的次数仍会生成可局部测试的代码,从而改善了以前的结果(仅在一次使用张量积时才有效)。 LTC的张量积。我们的测试人员使用与基本代码关联的测试人员分布来抽样产品代码的行和列。这种构造不同于先前研究的用于张量积代码的测试器,该测试器对行和列进行均匀采样。

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