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In [17], the joint DFE and PLL scheme originally proposed in [7] for single input multiple output (SIMO) systems has been extended to MIMO cases.
This short paper presents a design technique based on passivity for single input single output (SISO) systems through a process of feedback passivisation.
A general flatness based control design and parametrization procedure for single input time varying systems modelled by bond graphs is presented.
In addition, a resource allocation scheme for maximizing the energy efficiency of data transmission was developed for single input single output (SISO) frequency division multiple access (OFDMA) system with simultaneous wireless information and power transfer [17].
In this paper we present a new approach for blind identification of non-minimum phase FIR channels for single input single output (SISO) and multiple inputs single output (MISO) scenarios.
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In [19], a steady state ILC scheme is proposed for single-input-single-output nonlinear PDEs.
Figure 3 Block diagram of BICM with iterative decoding for single-input single-output systems.
This paper addresses the feedforward/output feedback control problem for single-input single-output minimum-phase nonlinear processes.
Channel estimation for single-input multiple-output (SIMO) frequency-selective time-varying channels is considered using superimposed training.
For single-input single-output communication systems, this problem has been solved based on the EIJM [10].
These solvability conditions are necessary and sufficient for single-input agents and sufficient for multi-input agents.
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