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On optimal hyperuniversal and rearrangeable switch box designs

机译:最佳的超通用和可重布置开关盒设计

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This paper explores theories on designing optimal multipoint interconnection structures, and proposes a simple switch box design scheme which can be directly applied to field programmable gate arrays (FPGAs), switch box designs, and communication switching network designs. We present a new hyperuniversal switch box designs with four sides and W terminals on each side, which is routable for every multipin net-routing requirement. This new design is proved to be optimum for W = 1, ..., 5 and close to optimum for W /spl ges/ 6 with 6.3 W switches. We also give a formal analysis and extensive benchmark experiments on routability comparisons between today's most well-known FPGA switch boxes like disjoint switch blocks (Xilinx XC4000 Type), Wilton's switch blocks, Universal switch blocks, and our Hyperuniversal switch boxes. We apply the design scheme to rearrangeable switching network designs targeting for applications of connecting multiple terminals (e.g., teleconferencing). Simply using a /spl kappa/-sided hyperuniversal switch block with a W /spl times/ W crossbar attached to each side, one can build a three-stage one-sided polygonal switching network capable of realizing every multipoint connection requirement on kW terminals. Besides, due to the fine-grained decomposition property of our design scheme, the new switch box designs are highly scalable and simple on physical layout and routing algorithm implementations.
机译:本文探讨了设计最佳多点互连结构的理论,并提出了一种可直接应用于现场可编程门阵列(FPGA),开关盒设计和通信交换网络设计的简单开关盒设计方案。我们提出了一种新的超通用开关盒设计,该设计具有四个侧面,每个侧面都有W端子,可针对每个多针网络布线要求进行布线。事实证明,这种新设计对于W = 1,...,5是最佳的,而对于具有6.3 W开关的W / splges / 6是最佳的。我们还对当今最著名的FPGA开关盒(如不相交的开关盒(Xilinx XC4000型),Wilton的开关盒,通用开关盒和我们的Hyperuniversal开关盒)之间的布线能力比较进行了形式化分析和广泛的基准实验。我们将设计方案应用于可重新安排的交换网络设计,其目标是连接多个终端的应用(例如,电话会议)。只需使用每边都带有W / spl times / W交叉开关的/ spl kappa /双面超级通用开关模块,就可以构建一个三级单面多边形开关网络,该网络能够实现kW端子上的每个多点连接要求。此外,由于我们的设计方案具有细粒度的分解特性,因此新的开关盒设计具有很高的可扩展性,并且在物理布局和路由算法的实现上都很简单。

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