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Multiple error detection and correction over GF(2m) using novel cross parity code

机译:使用新型交叉奇偶校验码对GF(2m)进行多重错误检测和纠正

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Communication becomes most important in today's life. The world is dreaded to think beyond any communication gadgets. Data communication basically involves transfers of data from one place to another or from one point of time to another. Error may be introduced by the channel which makes data unreliable for user. Hence we need different error detection and error correction schemes. Our need is to achieve High speed and low complexity. The proposed work is to detect and correct a multiple error using low complexity novel cross parity code at lower overhead over GF(2m). It is able to correct m<;= Dw<;= 3m/2-1 multiple error combination out of all the possible 2m-1 error. Our proposed work is to test on 128 bit parallel and 163 bit (FIPT/NIST) standard word level GF multiplier and improve the efficiency of the circuit when compare to the existing work. Then we implement the design using VHDL, then simulated and synthesized using Modelsim SE 6 simulator and Xilinx ISE 6.3i respectively.
机译:交流成为当今生活中最重要的。全世界都害怕思考超越任何通讯工具的想法。数据通信基本上涉及从一个地方到另一个地方或从一个时间点到另一个时间点的数据传输。通道可能会引入错误,从而使数据对用户不可靠。因此,我们需要不同的错误检测和错误纠正方案。我们需要实现高速和低复杂度。拟议的工作是在GF(2m)上以较低的开销使用低复杂度的新型交叉奇偶校验码来检测和纠正多重错误。它能够校正所有可能的2m-1错误中的m <; = Dw <; = 3m / 2-1多个错误组合。我们建议的工作是在128位并行和163位(FIPT / NIST)标准字级GF乘法器上进行测试,与现有工作相比,可以提高电路效率。然后,我们使用VHDL实施设计,然后分别使用Modelsim SE 6仿真器和Xilinx ISE 6.3i进行仿真和综合。

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