Abstract:
In this letter, we address hardware impairments (HWIs) in security-focused communication systems using Active Reconfigurable intelligent surface (ARIS). A robust beamform...Show MoreMetadata
Abstract:
In this letter, we address hardware impairments (HWIs) in security-focused communication systems using Active Reconfigurable intelligent surface (ARIS). A robust beamforming design is proposed to mitigate impairments at the base station (BS), legitimate users, and RIS. Using an alternating optimization (AO) approach, we optimize BS beamforming and ARIS reflection phase coefficients. Auxiliary variables are introduced to tackle non-convex constraints, while techniques such as successive convex approximation (SCA) and semidefinite relaxation (SDR) are employed to solve the subproblems. Numerical results illustrate that our scheme significantly improves security, achieving a higher secrecy rate, and enhancing the robustness of the method.
Published in: IEEE Wireless Communications Letters ( Volume: 13, Issue: 12, December 2024)
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- IEEE Keywords
- Index Terms
- Secure Communication ,
- Hardware Impairments ,
- MISO System ,
- Communication Systems ,
- Base Station ,
- Robust Design ,
- Legitimate Users ,
- Non-convex Constraints ,
- Alternating Optimization ,
- Beamforming Design ,
- Reconfigurable Intelligent Surface ,
- Semidefinite Relaxation ,
- Objective Function ,
- Wireless ,
- Diagonal Matrix ,
- Phase Shift ,
- Additive Noise ,
- Signal Power ,
- Reflection Coefficient ,
- Analog-to-digital Converter ,
- Random Phase ,
- Phase Noise ,
- Beamforming Vector ,
- Automatic Gain Control ,
- Joint Optimization ,
- Physical Layer Security ,
- Path Loss ,
- First-order Taylor Approximation ,
- Convex Optimization ,
- Impact Of Impairment
- Author Keywords
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Secure Communication ,
- Hardware Impairments ,
- MISO System ,
- Communication Systems ,
- Base Station ,
- Robust Design ,
- Legitimate Users ,
- Non-convex Constraints ,
- Alternating Optimization ,
- Beamforming Design ,
- Reconfigurable Intelligent Surface ,
- Semidefinite Relaxation ,
- Objective Function ,
- Wireless ,
- Diagonal Matrix ,
- Phase Shift ,
- Additive Noise ,
- Signal Power ,
- Reflection Coefficient ,
- Analog-to-digital Converter ,
- Random Phase ,
- Phase Noise ,
- Beamforming Vector ,
- Automatic Gain Control ,
- Joint Optimization ,
- Physical Layer Security ,
- Path Loss ,
- First-order Taylor Approximation ,
- Convex Optimization ,
- Impact Of Impairment
- Author Keywords