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首页> 外文期刊>Journal of signal processing systems for signal, image, and video technology >Power Efficient SDR Implementation of IEEE 802.11a/p Physical Layer
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Power Efficient SDR Implementation of IEEE 802.11a/p Physical Layer

机译:IEEE 802.11a / p物理层的高效SDR实现

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Software defined physical layer modems can be considered the new trend in the field of communications. Differently from dedicated hardware, software can be easily modified to implement a large variety of standards on the same platform. The use of software can significantly reduce development costs, but generally comes at the price of an increase in silicon area and power consumption. For different reasons, this price is something that is not always convenient or even possible to pay, as in the case of low-cost ICs implementing a single waveform, or even multi-mode modems embedding legacy IPs already available in hardware. In particular, power consumption overhead can be prohibitive for mobile terminals or in general for battery-powered devices. The very first challenge for a computing fabric to be competitive is to find and implement the right trade-off between flexibility and performance. This was the guideline for the design of the Block Processing Engine (BPE), a template architecture conceived for power-efficient baseband processing. The BPE core feature is a mixed-grain instruction set balancing general-purpose fine-grain instructions with more specific coarse-grain instructions wrapping custom hardware modules. To further limit the power consumption, the BPE also implements instruction-pipelining, variable-size SIMD and multi-task support. To prove the efficiency of such an approach, a dual-mode IEEE 802.11a/p receiver has been implemented.
机译:软件定义的物理层调制解调器可以被认为是通信领域的新趋势。与专用硬件不同,可以轻松修改软件以在同一平台上实现多种标准。使用软件可以显着降低开发成本,但通常是以增加硅面积和功耗为代价的。由于不同的原因,这种价格并不总是很方便,甚至也不可能支付,例如在实现单个波形的低成本IC甚至是嵌入了硬件中已有IP的多模调制解调器的情况下。特别地,功耗开销对于移动终端或通常对于电池供电的设备可能是禁止的。计算结构要具有竞争力的第一个挑战是在灵活性和性能之间找到并实现正确的折衷方案。这是块处理引擎(BPE)设计的指南,BPE是为节能基带处理而设计的模板体系结构。 BPE核心功能是混合粒度指令集,它平衡了通用精细粒度指令和更具体的粗粒度指令,这些粗粒度指令包装了自定义硬件模块。为了进一步限制功耗,BPE还实现了指令流水线,可变大小的SIMD和多任务支持。为了证明这种方法的效率,已经实现了双模IEEE 802.11a / p接收器。

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