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Low-power adaptive filter architectures and their application to 51.84 Mb/s ATM-LAN

机译:低功率自适应滤波器架构及其在51.84 Mb / s ATM-LAN中的应用

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We present low-power and high-speed algorithms and architectures for complex adaptive filters. These architectures have been derived via the application of algebraic and algorithm transformations. The strength reduction transformation is applied at the algorithmic level as opposed to the traditional application at the architectural level. This results in a power reduction by 21% as compared with the traditional cross-coupled structure. A fine-grained pipelined architecture for the strength-reduced algorithm is then developed via the relaxed lookahead transformation. This technique, which is an approximation of the conventional lookahead computation, maintains the functionality of the algorithm rather than the input-output behavior. Convergence analysis of the proposed architecture is presented and supported via simulation results. The pipelined architecture allows high-speed operation with negligible hardware overhead. It also enables an additional power savings of 39 to 69% when combined with power-supply reduction. Thus, an overall power reduction ranging from 60-90% over the traditional cross-coupled architecture is achieved. The proposed architecture is then employed as a receive equalizer in a communication system for a data rate of 51.84 Mb/s over 100 m of UTP-3 wiring in an ATM-LAN environment. Simulation results indicate that speedups of up to 156 can be achieved with about a 0.8-dB loss in performance.
机译:我们提出了用于复杂自适应滤波器的低功耗和高速算法和架构。这些体系结构是通过代数和算法转换的应用得出的。强度降低转换是在算法级别应用的,与在架构级别的传统应用相反。与传统的交叉耦合结构相比,这可将功耗降低21%。然后,通过轻松的超前转换,为降低强度的算法开发了一种细粒度的流水线架构。这种技术是传统超前计算的一种近似方法,它保持了算法的功能而不是输入输出行为。通过仿真结果对所提出的体系结构进行了收敛分析。流水线架构允许高速运行且硬件开销可忽略不计。当与电源减少相结合时,还可以节省39%至69%的功耗。因此,与传统的交叉耦合架构相比,总体功耗降低了60-90%。然后,将所提出的体系结构用作通信系统中的接收均衡器,以在ATM-LAN环境中通过100 m的UTP-3布线实现51.84 Mb / s的数据速率。仿真结果表明,在性能损失约0.8dB的情况下,可以实现高达156的加速。

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