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Regular-choice Petri Nets for MIMO detectors

机译:用于MIMO检测器的常规选择Petri网

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Communications terminals in Multi-Input Multi-Output wireless communication systems have to maintain high quality signal transmission in highly dynamic operating environments and across channels of vastly differing quality. This places extreme pressure on model-based system synthesis approaches used to realise the embedded DSP processing within these devices, since the majority of the most effective techniques address static systems. In particular, these approaches suffer the key drawback that behavioral modelling languages for such systems are sorely lacking, resulting in inefficient implementations from current languages. We present a new Petri Net based language which resolves this situation for decoder-type algorithms in these systems, and show when applied to Sphere Decoder algorithms, specifically Fixed Complexity Sphere Decoders, it enables Texas Instruments TMS320C64+ DSP-based realisations with 90% reduction in run-time overhead and 10% reduction in code memory as compared to current languages.
机译:多输入多输出无线通信系统中的通信终端必须在高度动态的操作环境中以及跨质量差异很大的通道之间保持高质量的信号传输。由于大多数最有效的技术都针对静态系统,因此这给用于在这些设备中实现嵌入式DSP处理的基于模型的系统综合方法带来了极大的压力。特别地,这些方法遭受关键缺陷,即严重缺乏用于此类系统的行为建模语言,从而导致当前语言的实施效率低下。我们提出了一种新的基于Petri Net的语言,该语言解决了这些系统中解码器类型算法的这种情况,并展示了将其应用于Sphere Decoder算法(特别是固定复杂度Sphere Decoders)时,它可以使Texas Instruments基于TMS320C64 + DSP的实现减少90%。与当前语言相比,运行时开销和代码内存减少了10%。

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