瑞利衰落信道的量子增强LDPC解码研究

Utso Majumder, Aditya Das Sarma, Vishnu Vaidya, M. Chandra
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引用次数: 0

摘要

量子计算机和经典计算机继续紧密合作,共同解决难题。因此,这种组合最近被建议用于解码低密度奇偶校验(LDPC)代码,用于下一代无线通信系统。本文针对瑞利衰落信道中信道状态完全已知和信道状态未知两种情况,给出了二次型无约束二值优化(QUBO)公式。由此产生的QUBO使用D-Wave 2000Q量子退火器解决,退火器的输出经过经典的后处理,调用了多样性的概念。与选择误码率(BER)方面的最小能量解决方案相比,对输出的可用副本进行简单的最小距离解码可以提高性能。除了提供这些结果并与完全经典的模拟退火(SA)和传统的基于信念传播(BP)的策略进行比较外,还对量子处理引起的多样性进行了一些评论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On Quantum-Enhanced LDPC Decoding for Rayleigh Fading Channels
Quantum and Classical computers continue to work together in tight cooperation to solve difficult problems. The combination is thus suggested in recent times for decoding the Low Density Parity Check (LDPC) codes, for the next generation Wireless Communication systems. In this paper we have worked out the Quadratic Unconstrained Binary Optimization (QUBO) formulation for Rayleigh Fading channels for two different scenarios- channel state fully known and not known. The resultant QUBO are solved using D-Wave 2000Q Quantum Annealer and the outputs from the Annealer are classically postprocessed, invoking the notion of diversity. Simple minimum distance decoding of the available copies of the outputs led to improved performance, compared to picking the minimum-energy solution in terms of Bit Error Rate (BER). Apart from providing these results and the comparisons to fully classical Simulated Annealing (SA) and the traditional Belief Propagation (BP) based strategies, some remarks about diversity due to quantum processing are also spelt out.
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