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The Gallager Bound in Fiber Optical MIMO

机译:光纤MIMO中的Gallagher界

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The Multiple Input Multiple Output (MIMO) technique in fiber optical networks is a promising technology for up scaling networks' capabilities. Therefore, effective bounds on the error probability of finite length codewords are increasingly important. In this paper, we use random matrix techniques to obtain an analytic result for the Gallager bound error exponent for the fiber optical MIMO channel in the limit that the size of the codeword increases to infinity at a fixed ratio with the transmitter array dimensions. We assume zero backscattering inside the fiber which makes the transmission coefficients between the modes, elements of a unitary matrix. Moreover, the channel can be modelled a a random Haar unitary matrix between N transmitting and K receiving modes respectively, due to the scattering between modes.
机译:光纤网络中的多输入多输出(MIMO)技术是一个有希望的技术,用于提高缩放网络的能力。因此,有限长度码字的误差概率上的有效范围越来越重要。在本文中,我们使用随机矩阵技术来获得光纤光学MIMO信道的吉拉格绑定错误指数的分析结果,其中码字的大小随着发射器阵列尺寸的固定比率增加到无穷大。我们假设在光纤内部的零反向散射,这使得在模式之间的传输系数,整体矩阵的元素之间。此外,由于模式之间的散射,分别可以分别在n个发送和k接收模式之间建模信道。

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