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Achievable Throughput under BER Constraints via Transmission Scheduling and Multiuser Detection

机译:通过传输调度和多用户检测在BER约束下可达到的吞吐量

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摘要

We evaluate the throughput that can be achieved under BER constraints by combined use of transmission scheduling and multiuser detection. A schedule is a rule that specifies which subset of users is allowed to simultaneously transmit in a time slot. These subsets of overlapping transmissions, which can vary in different time slots of the transmission frame, are decoded by receivers equipped with multiuser detection. The goal is to find the largest such subsets under the requirement that each transmission satisfies a BER constraint. The joint problem of scheduling and multiuser-detection is highly complex in general. However, for certain class of multiuser detectors, the problem has efficient and optimal solution. By constructing transmission schedules that directly reflect the performance and exploit the capability of the multiuser detection receivers, as expected, multiuser detection-based scheduling significantly outperforms other methods such as TDMA and the conventional single-user detection-based scheduling.
机译:我们通过结合使用传输调度和多用户检测来评估在BER约束下可以实现的吞吐量。时间表是一个规则,用于指定允许哪个用户子集在一个时隙中同时发送。可以在传输帧的不同时隙中变化的重叠传输的这些子集由配备有多用户检测功能的接收器进行解码。目的是在每个传输满足BER约束的要求下找到最大的此类子集。调度和多用户检测的共同问题通常非常复杂。但是,对于某些类型的多用户检测器,该问题具有有效且最佳的解决方案。如预期的那样,通过构建直接反映性能并利用多用户检测接收器能力的传输调度,基于多用户检测的调度显着优于其他方法,例如TDMA和常规的基于单用户检测的调度。

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