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首页> 外文期刊>IEEE Transactions on Automatic Control >The optimal RLS parameter tracking algorithm for a power amplifier feedforward linearizer
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The optimal RLS parameter tracking algorithm for a power amplifier feedforward linearizer

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Digital signal processing (DSP) techniques have been proposed in recent years to adaptively track the control parameters of a power amplifier (PA) feedforward linearizer. In most of the propositions, gradient-based searching algorithms are applied to the parameter tracking. In this paper, we propose an optimal recursive least square (RLS) parameter tracking algorithm, which significantly accelerates the convergence speed and eliminates the gradient noise. There exist two problems for the RLSalgorithm. First, the least square solution is not the optimal solution because of the nonlinearity of the PA. Second, the vector modulator (VM) which introduces the control parameters into the linearizer circuit may not be accurate enough to provide aprecise power gain and phase shift calculated by the DSP. We solve both problems, respectively, by rearranging the circuit components and by constraining the VM characteristics. We also present simulation results to verify the performance improvement ofthe proposed algorithm.

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