Mitigation of self-interference and multi-user interference in downlink multi-user MIMO system

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Abstract

Here, the authors develop a method of simultaneous optimisation of precoder and equaliser for the multi-user multiple-input multiple-output (MIMO) system by minimising outage probability. In order to do that, the authors first characterise the signal-to-interference-plus-noise ratio of downlink multi-user MIMO system in the presence of both multi-user interference and self-interference. The closed-form expression for the outage probability is derived in terms of the eigenvalues of an indefinite weight matrix of a quadratic norm. Next, the authors develop an active-set algorithm-based precoder and equaliser by minimising the derived outage probability expression. This work investigates the effect of various system parameters such as the number of users, the number of multi-path channels, the number of transmitting and receiving antenna elements, and the additive noise variance on the outage probability and bit error rate. Simulation results validate the theoretical analysis for multiple system configurations. Lastly, the authors show that the designed precoder and equaliser improves the overall system performance.

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APA

Ahmed, R., Al-Saggaf, U. M., Moinuddin, M., & Hassan, A. K. (2017). Mitigation of self-interference and multi-user interference in downlink multi-user MIMO system. IET Communications, 11(17), 2605–2612. https://doi.org/10.1049/iet-com.2017.0880

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