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Method for Analyzing Bit Error Rates (BERs) of Nonlinear Circuits and Systems for High-Performance Signaling

机译:一种分析非线性电路和高性能信令系统误码率(BER)的方法

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摘要

Bit error rate (BER) is an important figure of merit to evaluate the performance of a communication system. Analyzing the BER of a linear-time-invariant system has been extensively studied. However, analyzing the BER of nonlinear circuits and systems is challenging because it cannot rely on linear time invariant (LTI) principles, while an exhaustive nonlinear simulation is computationally prohibitive. To find BER, an exhaustive approach requires nonlinear simulations of $2m$ bit patterns for a channel of m-bit memory, where m can be larger than 100 in today's high-speed and high-performance design. In this work, we develop a fast and accurate method to analyze the BER of large-scale nonlinear circuits. Only O(k) nonlinear simulations are required, with k much less than 2m and independent of $2m$ . While performing O(k) nonlinear simulations only, we find a method to determine the probability density function of the nonlinear responses, from which accurate BER results can be obtained. An error assessment method is also developed to evaluate the true error of the nonlinear signaling analysis without the need for knowing the entire nonlinear responses of the channel. Simulations of large-scale real-world nonlinear circuits have demonstrated the accuracy, efficiency, and capacity of the proposed method. A BER as low as $10{-56}$ is accurately predicted.
机译:误码率(BER)是评估通信系统性能的重要品质因数。分析线性时不变系统的误码率已被广泛研究。然而,分析非线性电路和系统的误码率具有挑战性,因为它不能依赖于线性时间不变 (LTI) 原理,而详尽的非线性仿真在计算上令人望而却步。为了找到 BER,一种详尽的方法需要对 m 位存储器通道的 $2m$ 位模式进行非线性仿真,在当今的高速和高性能设计中,m 可能大于 100。在这项工作中,我们开发了一种快速准确的方法来分析大规模非线性电路的误码率。只需要 O(k) 非线性模拟,k 远小于 2m,并且独立于 $2m$。在仅进行O(k)非线性模拟时,我们找到了一种确定非线性响应概率密度函数的方法,从中可以获得准确的BER结果。该文还开发了一种误差评估方法,用于评估非线性信令分析的真实误差,而无需了解信道的整个非线性响应。对大规模真实世界非线性电路的仿真证明了所提方法的精度、效率和容量。准确预测低至 $10{-56}$ 的 BER。

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