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Optimal real-time blind decoding scheme for linear transceivers in wireless communication systems based on orthonormal real valued short time block codes

机译:基于反正常值的基于反正常值的短时间块代码的无线通信系统中线性收发器的最佳实时盲解码方案

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This paper proposes an optimal blind decoding scheme for linear transceivers based on orthonormal real valued short time block codes. The decoding scheme is to minimize the total decoding error within the blocks subject to the orthonormal property among the encoded vectors. The decoding problem is actually an optimization problem with a quadratic objective function subject to a quadratic matrix equality constraint. The solution of the optimization problem is solved analytically via a singular value decomposition approach. As no computer aided design tool is required for solving the problem, the computational power for solving the problem is very low and the solution can be obtained in real-time. Computer numerical simulation results show that our proposed method achieves a lower total decoding error compared to those of existing decoding schemes.
机译:本文提出了一种基于正交实值短时块代码的线性收发器的最佳盲解码方案。 解码方案是最小化受编码向量之间的正交性的块内的块内的总解码误差。 解码问题实际上是具有二次矩阵平等约束的二次目标函数的优化问题。 通过奇异值分解方法分析解决优化问题的解决方案。 由于没有计算机辅助设计工具来解决问题,因此解决问题的计算能力非常低,并且可以实时获得解决方案。 计算机数值仿真结果表明,与现有解码方案相比,我们所提出的方法实现了较低的总解码误差。

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