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Improving the Packet Delivery Performance for Concurrent Packet Transmissions in WSNs

机译:提高WSN中并发数据包传输的数据包传递性能

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In this letter, we investigate the properties of packet collisions in IEEE 802.15.4-based wireless sensor networks when packets with the same content are transmitted concurrently. While the nature of wireless transmissions allows the reception of a packet when the same packet is transmitted at different radios with (near) perfect time synchronization, we find that in practical systems, platform specific characteristics, such as the independence and error of the crystal oscillators, cause packets to collide disruptively when the two signals have similar transmission powers (i.e., differences of <2 dBm). In such scenarios, the packet reception ratio (PRR) of concurrently transmitted packets falls below 10%. Nevertheless, we empirically show that the packet corruption patterns are easily recoverable using forward error correction schemes and validate this using implementations of RS and convolutional codes. Overall, our results show that using such error correction schemes can increase the PRR by more than four-fold.
机译:在这封信中,我们研究了当同时传输具有相同内容的数据包时,基于IEEE 802.15.4的无线传感器网络中数据包冲突的属性。虽然无线传输的性质允许在(接近)完美的时间同步下在不同的无线电上发送相同的数据包时接收到一个数据包,但我们发现在实际系统中,平台特定的特性(例如晶体振荡器的独立性和误差)当两个信号具有相似的传输功率(即,差异<2 dBm)时,导致数据包破坏性地冲突。在这种情况下,同时发送的数据包的数据包接收率(PRR)降至10%以下。然而,我们凭经验表明,使用前向纠错方案可以轻松恢复数据包损坏模式,并使用RS和卷积码的实现对此进行验证。总的来说,我们的结果表明,使用这种纠错方案可以使PRR增加四倍以上。

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