Hardware And Latency Efficient Architecture for Successive Cancellation List Decoding of Polar Codes

M Lakshmi, Narayanan G Lakshmi · 2019 TEQIP III Sponsored International Conference on Microwave Integrated Circuits, Photonics and Wireless Networks (IMICPW) · 2019

In order to achieve a magnificent error-correcting performance Successive Cancellation List (SCL) decoding is a powerful and excellent method which considers L decoding paths at each decoding stage concurrently. However, the conventional SCL decoder uses L copies of Successive Cancellation (SC) decoder for a list size of L thereby resulting in a massive increase in the hardware as the list size increases which is one of the major drawbacks of SCL decoder. One more drawback of SCL decoder architecture is the long latency of the architecture. Using the proposed efficient utilization of existing hardware architecture, there is a reduction in the number of Merged Processing Elements (MPE) by 39% for a list size of 2 and 45% for a list size of 4 when compared to the existing architectures and a vast reduction compared to conventional SCL decoder. The partial pipelining considered in this work can reduce the latency compared to conventional SCL multi-bit architecture to a greater extent.

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