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Efficient VLSI architectures for baseband signal processing in wireless base-station receivers

机译:无线基站接收机中用于基带信号处理的高效VLSI架构

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A real-time VLSI architecture is designed for multiuser channel estimation, one of the core baseband processing operations in wireless base-station receivers. Future wireless base-station receivers will need to use sophisticated algorithms to support extremely high data rates and multimedia. Current DSP architectures are unable to fully exploit the parallelism and bit level arithmetic present in these algorithms. These features can be revealed and efficiently implemented by task partitioning the algorithms for a VLSI solution. We modify the channel estimation algorithm for a reduced complexity fixed-point hardware implementation. We show the complexity and hardware required for three different area-time tradeoffs: an area-constrained, a time-constrained and an area-time efficient architecture. The area-constrained architecture achieves low data rates with minimum hardware, which may be used in pico-cell base-stations. The time-constrained solution exploits the entire available parallelism and determines the maximum theoretical data rates. The area-time efficient architecture meets real-time requirements with minimum area overhead. The orders-of-magnitude difference between area and time constrained solutions reveals significant inherent parallelism in the algorithm. All proposed VLSI solutions exhibit better time performance than a previous DSP implementation.
机译:实时VLSI架构设计用于多用户信道估计,无线基站接收器中的核心基带处理操作之一。未来的无线基站接收器需要使用复杂的算法来支持极高的数据速率和多媒体。当前的DSP架构无法充分利用这些算法中存在的并行性和比特级算术。可以通过任务划分VLSI解决方案的算法来揭示和有效地实现这些功能。我们修改了减少复杂性定点硬件实现的信道估计算法。我们展示了三个不同的区域时间权力所需的复杂性和硬件:区域受约束,时间约束和区域时间高效架构。区域约束架构实现了具有最小硬件的低数据速率,这可以用于微微小区基站。时间约束的解决方案利用整个可用的并行性并确定最大的理论数据速率。区域时间高效架构符合最小面积开销的实时要求。区域和时间约束解决方案之间的幅度差异呈现出算法中的显着固有的并行性。所有提议的VLSI解决方案都表现出比以前的DSP实现更好的时间性能。

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