7 research outputs found

    Generalized multicarrier CDMA: Unification and linear equalization

    Get PDF
    Relying on block-symbol spreading and judicious design of user codes, this paper builds on the generalized multkarrier (GMC) quasisynchronous CDMA system that is capable of multiuser interference (MUI) elimination and intersymbol interference (ISI) suppression with guaranteed symbol recovery, regardless of the wireless frequency-selective channels. GMC-CDMA affords an all-digital unifying framework, which encompasses single-carrier and several multicarrier (MC) CDMA systems. Besides the unifying framework, it is shown that GMC-CDMA offers flexibility both in full load (maximum number of users allowed by the available bandwidth) and in reduced load settings. A novel blind channel estimation algorithm is also derived. Analytical evaluation and simulations illustrate the superior error performance and flexibility of uncoded GMC-CDMA over competing MC-CDMA alternatives especially in the presence of uplink multipath channels

    Equalization with oversampling in multiuser CDMA systems

    Get PDF
    Some of the major challenges in the design of new-generation wireless mobile systems are the suppression of multiuser interference (MUI) and inter-symbol interference (ISI) within a single user created by the multipath propagation. Both of these problems were addressed successfully in a recent design of A Mutually Orthogonal Usercode-Receiver (AMOUR) for asynchronous or quasisynchronous code division multiple access (CDMA) systems. AMOUR converts a multiuser CDMA system into parallel single-user systems regardless of the multipath and guarantees ISI mitigation, irrespective of the channel locations. However, the noise amplification at the receiver can be significant in some multipath channels. In this paper, we propose to oversample the received signal as a way of improving the performance of AMOUR systems. We design Fractionally Spaced AMOUR (FSAMOUR) receivers with integral and rational amounts of oversampling and compare their performance with the conventional method. An important point that is often overlooked in the design of zero-forcing channel equalizers is that sometimes, they are not unique. This becomes especially significant in multiuser applications where, as we will show, the nonuniqueness is practically guaranteed. We exploit this flexibility in the design of AMOUR and FSAMOUR receivers and achieve noticeable improvements in performance

    Multi-carrier Ultra-Wideband multiple-access with good resilience against multiuser interference

    Get PDF
    Abstract - We propose a multi-carrier based multiple-access scheme for ultra-wideband (UWB) communications that is capable of deterministic removal of multiuser interference, irrespective of the users' multipath channels, in asynchronous mode. The receivers for different users have the same structure, except for a different mixer front-end. The maximum-likelihood receiver can be matched-filter based, with only the desired user's channel state information, and hence without the need for multiuser detection. Performance simulation shows significant improvement as compared with existing time-hopping spread spectrum UWB multiple access schemes

    Equalization with oversampling in multiuser CDMA systems

    Full text link

    AMOUR-generalized multicarrier transceivers for blind CDMA regardless of multipath

    No full text
    corecore