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Efficient Data Collection Over Multiple Access Wireless Sensors Network

机译:多访问无线传感器网络上的高效数据集合

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Data collection in Wireless Sensor Networks (WSN) draws significant attention, due to emerging interest in technologies ranging from Internet of Things (IoT) networks to simple "Presence" applications, which identify the status of the devices (active or inactive). Numerous Medium Access Control (MAC) protocols for WSN, which can address the challenge of data collection in dense networks, were suggested over the years. Most of these protocols utilize the traditional layering approach, in which the MAC layer is unaware of the encapsulated packet payload, and therefore there is no connection between the data collected, the physical layer and the signaling mechanisms. Nonetheless, in many of the applications that intend to utilize such protocols, nodes may need to exchange very little information, and do so only sporadically, that is, while the number of devices in the network can be very large, only a subset wishes to transmit at any given time. Thus, a tailored protocol, which matches the signaling, physical layer and access control to traffic patterns is required. In this work, we design and analyze a data collection protocol based on information theoretic principles. In the suggested protocol, the sink collects messages from up to $K$ sensors simultaneously, out of a large population of sensors, without knowing in advance which sensors will transmit, and without requiring any synchronization, coordination or management overhead. In other words, neither the sink nor the other sensors need to know who are the actively transmitting sensors, and this data is decoded directly from the channel output. We provide a simple codebook construction with very simple encoding and decoding procedures. We further design a secure version of the protocol, in which an eavesdropper observing only partial information sent on the channel cannot gain significant information on the messages transmitted or even which are the sources that sent these messages.
机译:由于从Internet(IoT)网络的技术对简单的“存在”应用程序来识别设备的状态(活动或非活动或非活动或非活动)的技术,无线传感器网络(WSN)中的数据收集引起重大关注。多年来提出了WSN的许多媒体访问控制(Mac)协议,可以解决数据收集中的数据收集挑战。这些协议中的大多数利用传统的分层方法,其中MAC层不知道封装的分组有效载荷,因此收集的数据之间没有连接,物理层和信令机制之间。尽管如此,在打算使用此类协议的许多应用程序中,节点可能需要交换很少的信息,并且只偶尔这样做,也就是说,虽然网络中的设备数量非常大,但是只有一个子集希望在任何给定时间传输。因此,需要定制的协议,其匹配信令,物理层和访问流量模式。在这项工作中,我们根据信息理论原则设计和分析数据收集协议。在建议的协议中,水槽同时收集从最多$ k $传感器的消息,从大量的传感器中脱离,而不需要提前了解哪些传感器将传输,并且不需要任何同步,协调或管理开销。换句话说,沉没和其他传感器都不需要知道谁是主动发送传感器,并且该数据直接从信道输出解码。我们提供简单的码本结构,具有非常简单的编码和解码程序。我们进一步设计了协议的安全版本,其中仅观察信道上发送的部分信息的窃听器不能获得关于发送的消息或者甚至是发送这些消息的消息来源的重要信息。

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