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20162026
most citedTask Offloading for Large-Scale Asynchronous Mobile Edge Computing: An Index Policy Approach

24 citations · 198 across the 61 of their papers we have counts for

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Showing 2021Show all

9 papers · 1 filter

cs.IT2021

NOMA Joint Decoding based on Soft-Output Ordered-Statistics Decoder for Short Block Codes

Chentao Yue, Alva Kosasih, Mahyar Shirvanimoghaddam +5

In this paper, we design the joint decoding (JD) of non-orthogonal multiple access (NOMA) systems employing short block length codes. We first proposed a low-complexity soft-output…

eess.SP2021

Bayesian-based Symbol Detector for Orthogonal Time Frequency Space Modulation Systems

Xinwei Qu, Alva Kosasih, Wibowo Hardjawana +2

Recently, the orthogonal time frequency space (OTFS) modulation is proposed for 6G wireless system to deal with high Doppler spread. The high Doppler spread happens when the transm…

cs.IT2021

A Linear Bayesian Learning Receiver Scheme for Massive MIMO Systems

Alva Kosasih, Wibowo Hardjawana, Branka Vucetic +1

Much stringent reliability and processing latency requirements in ultra-reliable-low-latency-communication (URLLC) traffic make the design of linear massive multiple-input-multiple…

eess.SP2021

Improving Cell-Free Massive MIMO Detection Performance via Expectation Propagation

Alva Kosasih, Vera Miloslavskaya, Wibowo Hardjawana +2

Cell-free (CF) massive multiple-input multiple-output (M-MIMO) technology plays a prominent role in the beyond fifth-generation (5G) networks. However, designing a high performance…

cs.IT202119 cited

A Bayesian Receiver with Improved Complexity-Reliability Trade-off in Massive MIMO Systems

Alva Kosasih, Vera Miloslavskaya, Wibowo Hardjawana +3

The stringent requirements on reliability and processing delay in the fifth-generation (G) cellular networks introduce considerable challenges in the design of massive multiple-…

cs.IT20212 cited

Linear-Equation Ordered-Statistics Decoding

Chentao Yue, Mahyar Shirvanimoghaddam, Giyoon Park +3

In this paper, we propose a new linear-equation ordered-statistics decoding (LE-OSD). Unlike the OSD, LE-OSD uses high reliable parity bits rather than information bits to recover…