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20182021
most citedAchievable Rate Region for Iterative Multi-User Detection via Low-cost Gaussian Approximation

1 citations · 1 across the 1 of their papers we have counts for

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7 papers

cs.IT2021

Massive-MIMO Iterative Channel Estimation and Decoding (MICED) in the Uplink

Daniel Verenzuela, Emil Björnson, Xiaojie Wang +2

Massive MIMO uses a large number of antennas to increase the spectral efficiency (SE) through spatial multiplexing of users, which requires accurate channel state information. It i…

cs.IT2019

SINR Analysis of Different Multicarrier Waveforms over Doubly Dispersive Channels

Xiaojie Wang, Stephan ten Brink

Wireless channels generally exhibit dispersion in both time and frequency domain, known as doubly selective or doubly dispersive channels. To combat the delay spread effect, multic…

cs.IT2019

Achievable Rate Region for Iterative Multi-User Detection via Low-cost Gaussian Approximation

Xiaojie Wang, Chulong Liang, Li Ping +1

We establish a multiuser extrinsic information transfer (EXIT) chart area theorem for the interleave-division multiple access (IDMA) scheme, a special form of superposition coding,…

cs.IT20191 cited

Achievable Rate Region for Iterative Multi-User Detection via Low-cost Gaussian Approximation

Xiaojie Wang, Chulong Liang, Li Ping +1

We establish a multi-user extrinsic information transfer (EXIT) chart area theorem for the interleave-division multiple-access (IDMA) scheme, a special form of superposition coding…

cs.IT2019

Spatially Coupled LDPC Codes and the Multiple Access Channel

Sebastian Cammerer, Xiaojie Wang, Yingyan Ma +1

We consider spatially coupled low-density parity-check (SC-LDPC) codes within a non-orthogonal interleave division multiple access (IDMA) scheme to avoid cumbersome degree profile…

cs.IT2018

Near-Capacity Detection and Decoding: Code Design for Dynamic User Loads in Gaussian Multiple Access Channels

Xiaojie Wang, Sebastian Cammerer, Stephan ten Brink

This paper considers the forward error correction (FEC) code design for approaching the capacity of a dynamic multiple access channel (MAC) where both the number of users and their…