Stochastic Geometry-based Throughput Analysis of User-Specific Power-Level-Constrained GF-NOMA

T Hirai, Y Ueda, N Wakamiya - IEEE Internet of Things Journal, 2024 - ieeexplore.ieee.org
This paper proposes a stochastic geometry-based analytical framework for the throughput of
the grant-free power-domain non-orthogonal multiple access (GF-NOMA) with user-specific …

Stochastic Geometry-based Throughput Analysis of User-Specific Power-Level-Constrained GF-NOMA

T Hirai, Y Ueda, N Wakamiya - essopenarchive.org
This paper proposes an analytical framework for the throughput of the grant-free power-
domain non-orthogonal multiple access (GF-NOMA) with user-specific constraints of …

Stochastic Geometry-based Throughput Analysis of User-Specific Power-Level-Constrained GF-NOMA

T Hirai, Y Ueda, N Wakamiya - Authorea Preprints, 2024 - techrxiv.org
This paper proposes an analytical framework for the throughput of the grant-free power-
domain non-orthogonal multiple access (GF-NOMA) with user-specific constraints of …

Stochastic Geometry-based Throughput Analysis of User-Specific Power-Level-Constrained GF-NOMA

T Hirai, Y Ueda, N Wakamiya - Authorea Preprints, 2024 - advance.sagepub.com
This paper proposes an analytical framework for the throughput of the grant-free power-
domain non-orthogonal multiple access (GF-NOMA) with user-specific constraints of …

Stochastic Geometry-based Throughput Analysis of User-Specific Power-Level-Constrained GF-NOMA

T Hirai, Y Ueda, N Wakamiya - authorea.com
This paper proposes an analytical framework for the throughput of the grant-free power-
domain non-orthogonal multiple access (GF-NOMA) with user-specific constraints of …