Abstract:
Conventional orthogonal frequency division multiplexing (OFDM) waveform design in integrated sensing and communications (ISAC) systems usually selects the channels with h...Show MoreMetadata
Abstract:
Conventional orthogonal frequency division multiplexing (OFDM) waveform design in integrated sensing and communications (ISAC) systems usually selects the channels with high-frequency responses to transmit communication data, which does not fully consider the possible multi-tone narrowband interference in the environment. To mitigate these adverse effects, we propose an optimization model by weighting between peak sidelobe level and communication data rate, with power and communication subcarrier interval constraints. To tackle the resultant nonconvex problem, an iterative adaptive cyclic minimization (ACM) algorithm is developed, where an adaptive iterative factor is introduced to improve convergence. Subsequently, the least squares algorithm is used to reduce the coefficient of variation of envelopes by further optimizing the phase of the OFDM waveform. Finally, the numerical simulations are provided to demonstrate the anti-interference ability of the proposed OFDM strategy and the robustness of the ACM algorithm.
Published in: IEEE Communications Letters ( Volume: 28, Issue: 7, July 2024)
Funding Agency:
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- OFDM ,
- Measurement ,
- Autocorrelation ,
- Sensors ,
- Optimization ,
- Narrowband ,
- Transmitters
- Index Terms
- Orthogonal Frequency Division Multiplexing ,
- Waveform Design ,
- Narrowband Interference ,
- Interval Constraints ,
- Integrated Sensing And Communication ,
- Subcarrier Interval ,
- Numerical Simulations ,
- Non-convex Problem ,
- Power Constraint ,
- Minimization Algorithm ,
- Sidelobe Level ,
- Environmental Interference ,
- Optimization Problem ,
- Maximum Power ,
- Communication Channels ,
- Communication Performance ,
- Autocorrelation Function ,
- Bit Error Rate ,
- Optimization Variables ,
- Peak-to-average Power Ratio ,
- Complementary Cumulative Distribution Function ,
- Interior Point Method ,
- Bit Error Rate Performance ,
- Discrete Fourier Transform ,
- Convex Optimization Problem ,
- Joint Power Allocation ,
- Subband ,
- Flat Fading ,
- Monte Carlo Trials
- Author Keywords
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- OFDM ,
- Measurement ,
- Autocorrelation ,
- Sensors ,
- Optimization ,
- Narrowband ,
- Transmitters
- Index Terms
- Orthogonal Frequency Division Multiplexing ,
- Waveform Design ,
- Narrowband Interference ,
- Interval Constraints ,
- Integrated Sensing And Communication ,
- Subcarrier Interval ,
- Numerical Simulations ,
- Non-convex Problem ,
- Power Constraint ,
- Minimization Algorithm ,
- Sidelobe Level ,
- Environmental Interference ,
- Optimization Problem ,
- Maximum Power ,
- Communication Channels ,
- Communication Performance ,
- Autocorrelation Function ,
- Bit Error Rate ,
- Optimization Variables ,
- Peak-to-average Power Ratio ,
- Complementary Cumulative Distribution Function ,
- Interior Point Method ,
- Bit Error Rate Performance ,
- Discrete Fourier Transform ,
- Convex Optimization Problem ,
- Joint Power Allocation ,
- Subband ,
- Flat Fading ,
- Monte Carlo Trials
- Author Keywords