Ordered Reliability Bits Guessing Random Additive Noise Decoding

01/02/2020
∙
by   Ken R. Duffy, et al.
∙
0
∙

Guessing Random Additive Noise Decoding (GRAND) can, unusually, decode any forward error correction block code. The original algorithm assumed that the decoder received only hard decision demodulated to inform its decoding. As the incorporation of soft information is known to improve decoding precision, here we introduce Ordered Reliability Bits GRAND, that, for binary block code of length n, avails of no more than log_2(n) bits of code-book-independent quantized soft detection information per received bit to determine an accurate decoding. ORBGRAND is shown to provide better block error rate performance than CA-SCL, a state of the art CA-Polar decoder, with low complexity. Random Linear Codes of the same rate, decoded with ORBGRAND, are shown to have comparable block-error and complexity performance.

READ FULL TEXT

Please sign up or login with your details

Continue with:
Or login with email
Enter Password
Re-enter Password

Forgot password? Click here to reset
Success!
Error Icon An error occurred

Sign in with Google

×

Use your Google Account to sign in to DeepAI

×
Pro

Consider DeepAI Pro

Subscribe to DeepAI Pro
DeepAI Pro
Provides a limited generation allowance each month. When exceeded, you are charged overage rates available at deepai.org/pricing. Also includes an ad-free experience and API access. Renews automatically until canceled. Non-refundable.
Subtotal
Total due today

Payment

Add DeepAI credits
DeepAI credits
One-time purchase. Credits are added to your wallet after payment.
Subtotal
Total due today

Payment