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PSM-throttling: Minimizing Energy Consumption for Bulk Data Communications in WLANs

机译:PSM节流:将WLAN中的批量数据通信的能耗降至最低

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摘要

While the 802.11 power saving mode (PSM) and its enhancements can reduce power consumption by putting the wireless network interface (WNI) into sleep as much as possible, they either require additional infrastructure support, or may degrade the transmission throughput and cause additional transmission delay. These schemes are not suitable for long and bulk data transmissions with strict QoS requirements on wireless devices. With increasingly abundant bandwidth available on the Internet, we have observed that TCP congestion control is often not a constraint of bulk data transmissions as bandwidth throttling is widely used in practice. In this paper, instead of further manipulating the trade-off between the power saving and the incurred delay, we effectively explore the power saving potential by considering the bandwidth throttling on streaming/downloading servers. We propose an application-independent protocol, called PSM- throttling. With a quick detection on the TCP flow throughput, a client can identify bandwidth throttling connections with a low cost. Since the throttling enables us to reshape the TCP traffic into periodic bursts with the same average throughput as the server transmission rate, the client can accurately predict the arriving time of packets and turn on/off the WNI accordingly. PSM-throttling can minimize power consumption on TCP-based bulk traffic by effectively utilizing available Internet bandwidth without degrading the application's performance perceived by the user. Furthermore, PSM-throttling is client-centric, and does not need any additional infrastructure support. Our lab-environment and Internet-based evaluation results show that PSM- throttling can effectively improve energy savings (by up to 75%) and/or the QoS for a broad types of TCP- based applications, including streaming, pseudo streaming, and large file downloading, over existing PSM like methods.
机译:虽然802.11省电模式(PSM)及其增强功能可以通过尽可能使无线网络接口(WNI)进入睡眠状态来降低功耗,但它们要么需要额外的基础架构支持,要么可能降低传输吞吐量并导致额外的传输延迟。这些方案不适用于在无线设备上具有严格QoS要求的长时间大量数据传输。随着Internet上可用带宽的日益丰富,我们已经观察到TCP拥塞控制通常不是对大数据传输的限制,因为在实践中广泛使用了带宽限制。在本文中,我们没有进一步控制节电与发生延迟之间的折衷,而是通过考虑流/下载服务器上的带宽限制来有效地探索节电潜力。我们提出了一种独立于应用程序的协议,称为PSM节流。通过快速检测TCP流吞吐量,客户端可以低成本识别带宽限制连接。由于节流功能使我们能够将TCP流量重塑成具有与服务器传输速率相同的平均吞吐量的周期性突发,因此客户端可以准确地预测数据包的到达时间并相应地打开/关闭WNI。 PSM限制可通过有效利用可用的Internet带宽,而不会降低用户感知的应用程序性能,从而将基于TCP的大流量的功耗降至最低。此外,PSM限制是以客户端为中心的,不需要任何其他基础结构支持。我们的实验室环境和基于Internet的评估结果表明,针对各种基于TCP的应用程序(包括流传输,伪流传输和大型),PSM节流可以有效地提高能源节省(高达75%)和/或QoS。通过现有的PSM之类的方法下载文件。

著录项

  • 来源
  • 会议地点 Beijing(CN);Beijing(CN)
  • 作者单位

    Enhua Tan@Dept. of Computer Science and Engineering The Ohio State University Columbus, OH 43210, USA--Lei Guo@Dept. of Computer Science and Engineering The Ohio State University Columbus, OH 43210, USA--Songqing Chen@Dept. of Computer Science George Mason University Fairfax, VA 22030, USA--Xiaodong Zhang@Dept. of Computer Science and Engineering The Ohio State University Columbus, OH 43210, USA--;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 计算机网络;
  • 关键词

  • 入库时间 2022-08-26 13:52:10

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