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Joint identity-message coding

机译:联合身份消息编码

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摘要

In a significant class of sensor-network applications, the identities of the reporting sensors constitute the bulk of the communicated data, whereas the message itself can be as small as a single bit - for instance, in many cases, sensors are used to detect whether and where a certain interesting condition occurred, or to track incremental environmental changes at fixed locations. In such scenarios, the traditional network-protocol paradigm of separately specifying the source identity and the message in distinct fields leads to inefficient communication. This work addresses the question of how communication should happen in such identity-aware sensor networks. We calculate theoretical performance bounds for this type of communication, where 'performance' refers to the number of transmitted bits. We propose a communication protocol, where the identity and message of each source are specified jointly using subspace coding. We show through analysis and simulation that our protocol's performance is close to optimal and compare it to the performance of a traditional protocol, where identity and message are specified separately.
机译:在传感器网络的一大类应用中,报告传感器的身份构成了所通信数据的主体,而消息本身却可以小到一个比特-例如,在许多情况下,传感器用于检测是否以及发生某些有趣情况的位置,或跟踪固定位置的增量环境变化。在这种情况下,在不同字段中分别指定源身份和消息的传统网络协议范式导致通信效率低下。这项工作解决了在这种识别身份的传感器网络中应如何进行通信的问题。我们计算此类通信的理论性能范围,其中“性能”是指传输的位数。我们提出一种通信协议,其中使用子空间编码共同指定每个源的标识和消息。我们通过分析和仿真表明,我们的协议性能接近最佳,并将其与传统协议的性能进行比较,传统协议的身份和消息是分别指定的。

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