Information freshness, characterized by age of information (AoI), is important for sensor applications involving timely status updates. In many cases, the wireless signals from one sensor can be received by multiple access points (APs). This paper investigates the average AoI for cooperative APs, in which they can share information through a wired backbone network. We first study a basic backbone-assisted COoperative AP (Co-AP) system where APs share only decoded packets. Experimental results on software-defined radios (SDR) indicate that Co-AP significantly improves the average AoI performance over a single-AP system. Next, we investigate an improved Co-AP system, called Soft-Co-AP. In addition to sharing decoded packets, Soft-Co-AP shares and collects soft information of packets that the APs fail to decode for further joint decoding. A critical issue in Soft-Co-AP is determining the number of quantization bits that represent the soft information (each soft bit) shared over the backbone. While more quantization bits per soft bit improves the joint decoding performance, it leads to higher backbone delay. We experimentally study the average AoI of Soft-Co-AP by evaluating the tradeoff between the backbone delay and the number of quantization bits. SDR experiments show that when the number of sensors is large, Soft-Co-AP further reduces the average AoI by 12% compared with Co-AP. Interestingly, good average AoI performance is usually achieved when the number of quantization bits per soft bit is neither too large nor too small.
翻译:以信息年龄(AoI)为特征的信息新鲜度对于涉及及时更新状态的传感器应用非常重要。 在许多情况下, 一个传感器的无线信号可以通过多个接入点接收。 本文调查合作性AP的平均AoI信号, 其中它们可以通过有线主干网络共享信息。 我们首先研究一个基本的主干辅助合作AP(Co-AP)系统, 其中AP只共享解码包。 软件定义的无线电(SDR)的实验结果显示, 共同- AP(SDR) 大大改进了平均AoI的性能。 下一步, 我们调查一个改进的Co- AP系统, 叫做Soft- Co- AP。 除了共享已解码的包, 合作性能可以通过有线的主干辅助合作AP(Co- AP) 系统共享信息。 软性无线电定义的实验结果显示, 软性能( 软性) 表明, 在一个单一AP( 软性) 系统系统上共享的软性信息数量 。 我们的软性比小小点比比比小, 改进了共同的SE- AS- 延迟的运行业绩。 显示, 当我们平均SEA- deco- deco- dealal 的平级的成绩时, 当SUA- deal 的成绩是更慢时, 当SU(O- deal- deal- la- la- lax) la- cal- la- s