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We propose a novel complexity reduction scheme based on PCA, which can be used to control the computational complexity of the digital canceller, while minimizing the decrease in the cancellation performance.
In other words, the closer to 0 dB the canceller achieves, the better is its overall SI cancellation performance.
The AECs are evaluated in terms of cancellation performance and computation complexity.
Monte Carlo simulations show excellent echo cancellation performance for typical ITU-T echo channels.
Clearly, the proposed method still offers good cancellation performance, which is degraded as f 3dB increases.
Figure 12 shows that as the IIP3 value increases, the cancellation performance is improved.
Simulation results demonstrate that, compared to conventional methods, the proposed method can reduce computational cost with comparable crosstalk cancellation performance.
Table 5 Crosstalk cancellation performance in the asymmetric case for the three methods when the inverse filter length equals 150.
This measure was termed "true ERLE" in [48] and allows to assess the echo cancellation performance also during perturbation.
This paper examines the interference cancellation performance in global positioning system (GPS) receivers equipped with dual-polarized antenna arrays.
Only variations in the peak values of the PHAT results can degrade the jamming signal cancellation performance.
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