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Multiple input multiple output Dirty paper coding: System design and performance

机译:多输入多输出脏纸编码:系统设计和性能

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In this paper, a practical multiple input multiple output Dirty paper coding (MIMO-DPC) scheme is designed to cancel the effect of additive interference that is known perfectly to the transmitter. The proposed system uses a trio of encoders — a LDPC code, a vector quantizer implemented as a convolutional decoder and an Orthogonal space time block code (STBC) to achieve temporal coding gain, interference cancelation and spatial diversity, respectively. First, we derive the equivalent noise seen by the receiver using an equivalent lattice based dirty paper code. Then the optimal value of the power inflation factor, which is one of the key system parameters used to minimize the equivalent noise seen by the receiver is derived. Furthermore, we analytically prove that the equivalent noise seen by the receiver tends to 0 for large number of receive antennas. Performance results in the case of various number of receiver antennas are presented and show that significant reduction in bit error probabilities can be obtained over a system that uses no interference cancelation.
机译:在本文中,设计了一种实用的多输入多输出脏纸编码(MIMO-DPC)方案,以消除发射机所熟知的加性干扰影响。所提出的系统使用三重编码器-LDPC码,实现为卷积解码器的矢量量化器和正交空时分组码(STBC)来分别实现时间编码增益,干扰消除和空间分集。首先,我们使用基于等效点阵的脏纸代码来推导接收器看到的等效噪声。然后,得出功率膨胀因子的最优值,该最优值是用于使接收机看到的等效噪声最小化的关键系统参数之一。此外,我们通过分析证明,对于大量接收天线,接收机看到的等效噪声趋于0。给出了各种接收天线情况下的性能结果,结果表明,在不使用干扰消除的系统上,可以大大降低误码率。

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