Digital Predistortion for Power Amplifier Linearization in Radar-Communication Shared Apertures
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Examensarbete för masterexamen
Master's Thesis
Master's Thesis
Modellbyggare
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Sammanfattning
Shared radar and communication apertures are commonly optimized with radar performance
as the primary design objective. As a result, transmitter operating conditions
such as output power and amplifier efficiency are often chosen in a way that
is sub-optimal for communication performance. In particular, operating a power
amplifier close to compression improves efficiency and radar signal-to-noise ratio,
but introduces nonlinear distortion that degrades communication metrics.
This thesis investigates the use of digital predistortion as a software-based linearization
technique for communication signals transmitted through commonly utilized
radar power amplifiers. Two amplifier models are considered: a memoryless Saleh
model representing a traveling-wave tube amplifier (TWTA), and a generalized memory
polynomial (GMP) model representing a solid-state power amplifier (SSPA) with
nonlinear memory effects. Four communication waveforms are evaluated: two single
carrier waveforms and two orthogonal frequency-division multiplexing (OFDM)
waveforms. Digital predistortion models are trained using an indirect learning architecture
and assessed in terms of linearization performance, model complexity,
robustness to noise, and sensitivity to amplifier mismatch.
The results show that digital predistortion can significantly reduce nonlinear distortion
without requiring changes to the radio frequency hardware. For the memoryless
TWTA model, a low-complexity memoryless polynomial predistorter provides sufficient
linearization performance. For the memory-dependent SSPA model, memory
depth is the dominant factor affecting performance, especially for OFDM-based
waveforms. Polynomial order and cross terms provide additional improvements, but
with diminishing returns. Further analysis also shows that the predistortion models
are robust to moderate noise and amplifier variations, although the SSPA model case
is more sensitive to nonlinear memory mismatch. Overall, the thesis demonstrates
that digital predistortion is a promising approach for improving communication performance
in shared radar-communication transmitter systems.
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Ämne/nyckelord
digital predistortion, power amplifier linearization, generalized memory polynomial, TWTA, SSPA, radar-communication systems, EVM, ACLR, NMSE v
