A novel over-the-air computation (AirComp) framework, empowered by the
incorporation of movable antennas (MAs), is proposed to significantly enhance
computation accuracy. Within this framework, the joint optimization of transmit
power control, antenna positioning, and receive combining is investigated. An
efficient method is proposed to tackle the problem of computation mean-squared
error (MSE) minimization, capitalizing on the approach of alternating
optimization. Numerical results are provided to substantiate the superior MSE
performance of the proposed framework, which establish its clear advantage over
benchmark systems employing conventional fixed-position antennas (FPAs)