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Triple Modular Sum Code as a New Code for the Tasks of Checkable Automation System Synthesis

机译:三重模块和代码作为可检查自动化系统综合任务的新代码

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The author developed a new method of building a code with sum of unit data bits. It was suggested to calculate modified weight of a data bit, when building a sum code. The latter was achieved by determining the least non-negative residue of its actual weight, by means of a predefined module. Then the obtained number was corrected using two correction factors, calculated as modulo two convolution of various subsets of data vector bits. The author called the new code a triple modular sum code. The triple modular code is compared to classical Berger code according to its redundancy. It should be mentioned that it has better characteristics of error detection in data vectors in comparison with Berger code. Triple modular sum codes extend the class of common codes with low redundancy. Their application can be justified by hardware costs on implementation of fault detection property in controlled discrete objects. In this case, it is possible to build a whole family of triple modular codes for one length value of a data vector, thus extending the prospects of their application in the process of building reliable and safe control components.
机译:作者开发了一种使用单位数据位之和构建代码的新方法。建议在构建和码时计算数据位的修改权重。后者是通过预先定义的模块确定其实际重量的最小非负残基来实现的。然后,使用两个校正因子对获得的数量进行校正,这两个校正因子的计算方式是对数据矢量位的各个子集进行模二次卷积。作者将新代码称为三重模块和代码。根据其冗余度,将三重模块化代码与经典Berger代码进行比较。应该提到的是,与Berger码相比,它在数据向量中具有更好的检错特性。三重模块化和码扩展了具有低冗余度的通用码的类别。在受控的离散对象中实施故障检测属性的硬件成本可以证明它们的应用是合理的。在这种情况下,有可能针对一个数据矢量的长度值构建整个系列的三重模块化代码,从而扩展了它们在构建可靠和安全的控制组件过程中的应用前景。

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