Javascript must be enabled to continue!
Radio resource management for OFDM-based dual-function radar-communication: sum-rate and fairness
View through CrossRef
AbstractThis paper focuses on radio resource management (RRM) in multi-user dual-function radar communication (DFRC) systems using orthogonal frequency division multiplexing (OFDM) waveforms. We propose two RRM schemes, one from the perspective of sum rate maximization and the other from the perspective of user fairness maximization. These optimization problems are non-convex due to the presence of mixed integer terms, making them difficult to solve. To address these challenges, we have employed a decomposition approach to transform these two complex problems into separate, more readily solvable ones. In addressing the sum rate maximization problem, we initially introduce a heuristic greedy algorithm to obtain a resource allocation scheme that satisfies radar performance requirements. Subsequently, we utilize a cyclic iterative method along with KKT conditions to solve the sum rate maximization problem for communication users. Concerning the fairness maximization problem for communication users, we similarly employ a heuristic greedy algorithm to obtain a resource allocation scheme that meets radar performance constraints. Then utilize the Lagrangian dual method to solve the multi-user fairness maximization problem for communication users. Our experimental results confirm the effectiveness of the proposed algorithms.
Springer Science and Business Media LLC
Title: Radio resource management for OFDM-based dual-function radar-communication: sum-rate and fairness
Description:
AbstractThis paper focuses on radio resource management (RRM) in multi-user dual-function radar communication (DFRC) systems using orthogonal frequency division multiplexing (OFDM) waveforms.
We propose two RRM schemes, one from the perspective of sum rate maximization and the other from the perspective of user fairness maximization.
These optimization problems are non-convex due to the presence of mixed integer terms, making them difficult to solve.
To address these challenges, we have employed a decomposition approach to transform these two complex problems into separate, more readily solvable ones.
In addressing the sum rate maximization problem, we initially introduce a heuristic greedy algorithm to obtain a resource allocation scheme that satisfies radar performance requirements.
Subsequently, we utilize a cyclic iterative method along with KKT conditions to solve the sum rate maximization problem for communication users.
Concerning the fairness maximization problem for communication users, we similarly employ a heuristic greedy algorithm to obtain a resource allocation scheme that meets radar performance constraints.
Then utilize the Lagrangian dual method to solve the multi-user fairness maximization problem for communication users.
Our experimental results confirm the effectiveness of the proposed algorithms.
Related Results
Adaptive radio resource management for ofdma-based macro- and femtocell networks
Adaptive radio resource management for ofdma-based macro- and femtocell networks
Las demandas y expectativas de los usuarios y operadores móviles crecen sin parar y, consecuentemente, los nuevos estándares han incorporado tecnologías de acceso de radio cada vez...
Orthogonal Frequency Division Multiplexing Techniques Comparison for Underwater Optical Wireless Communication Systems
Orthogonal Frequency Division Multiplexing Techniques Comparison for Underwater Optical Wireless Communication Systems
Optical wireless communication is an energy-efficient and cost-effective solution for high-speed and highly-secure wireless connections. In this paper, we compare, discuss, and ana...
Optical-OFDM VLC System: Peak-to-Average Power Ratio Enhancement and Performance Evaluation
Optical-OFDM VLC System: Peak-to-Average Power Ratio Enhancement and Performance Evaluation
Visible Light Communication (VLC) systems are favoured for numerous applications due to their extensive bandwidth and resilience to electromagnetic interference. This study delinea...
Magnetohydrodynamics enhanced radio blackout mitigation system for spacecraft during planetary entries
Magnetohydrodynamics enhanced radio blackout mitigation system for spacecraft during planetary entries
(English) Spacecraft entering planetary atmospheres are enveloped by a plasma layer with high levels of ionization, caused by the extreme temperatures in the shock layer. The charg...
Design of IM-DD Optical Communication using Matlab
Design of IM-DD Optical Communication using Matlab
A modulation scheme where the intensity of an optical source is modulated by the RF or mm-wave signal. Demodulation is achieved through direct detection of the optical carrier and ...
SLANTLET TRANSFORM-BASED OFDM SCHEME
SLANTLET TRANSFORM-BASED OFDM SCHEME
Wireless digital communication is rapidly expanding resulting in a demand for systems that are reliable and have a high spectral efficiency. To fulfill these demands OFDM technolog...
Algorithmic Individual Fairness and Healthcare: A Scoping Review
Algorithmic Individual Fairness and Healthcare: A Scoping Review
AbstractObjectiveStatistical and artificial intelligence algorithms are increasingly being developed for use in healthcare. These algorithms may reflect biases that magnify dispari...
OFDM-Based Generalized Optical MIMO
OFDM-Based Generalized Optical MIMO
<p>The combination of multiple-input
multiple-output (MIMO) transmission and orthogonal frequency division
multiplexing (OFDM) modulation has been shown to be an effective wa...

