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Adaptive radio for multimedia wireless links

机译:多媒体无线链接的自适应无线电

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摘要

The quality of wireless links suffers from time-varying channel degradations such as interference, flat-fading, and frequency-selective fading. Current radios are limited in their ability to adapt to these channel variations because they are designed with fixed values for most system parameters such as frame length, error control, and processing gain. The values for these parameters are usually a compromise between the requirements for worst-case channel conditions and the need for low implementation cost. Therefore, in benign channel conditions these commercial radios can consume more battery energy than needed to maintain a desired link quality, while in a severely degraded channel they can consume energy without providing any quality-of-service (QoS). While techniques for adapting radio parameters to channel variations have been studied to improve link performance, in this paper they are applied to minimize battery energy. Specifically, an adaptive radio is being designed that adapts the frame length, error control, processing gain, and equalization to different channel conditions, while minimizing battery energy consumption. Experimental measurements and simulation results are presented to illustrate the adaptive radio's energy savings.
机译:无线链路的质量遭受时变信道降级的影响,例如干扰,平坦衰落和频率选择性衰落。当前的无线电设备适应这些信道变化的能力受到限制,因为它们针对大​​多数系统参数(例如帧长,错误控制和处理增益)采用固定值进行设计。这些参数的值通常是在最坏情况下的信道条件要求与低实施成本需求之间的折衷方案。因此,在良性信道条件下,这些商用无线电会消耗比维持所需链路质量所需更多的电池能量,而在严重降级的信道中,它们可能会消耗能量而不提供任何服务质量(QoS)。虽然已经研究了使无线电参数适应信道变化的技术来改善链路性能,但在本文中,它们被应用来最大程度地减少电池能量。具体来说,正在设计一种自适应无线电,它可以将帧长度,错误控制,处理增益和均衡适应于不同的信道条件,同时将电池能耗降至最低。给出了实验测量结果和仿真结果,以说明自适应无线电的节能效果。

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