Frequency look-ahead and link state history based interference avoidance in wireless picocellular networks

D. Anvekar, M. Kapoor
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引用次数: 5

Abstract

In this paper, we present a scheme for combating the problem of interference in frequency hopping indoor wireless communication systems such as Bluetooth. Other methods in reported literature involve adapting the hopping sequence to avoid bad frequencies but they are unsuitable for Bluetooth which has a fixed hopping sequence for a picocell. The proposed scheme is based on the concept of frequency look-ahead and maintaining link state history (LSH) as a table. Look-ahead is employed to know a priori the frequencies that might be used for transmission in the near future. LSH is used to predict the probability of future interference. The paper gives two methods of recording LSH, the first based on the receipt of ACKs and NAKs from the slave and the second based on slave side monitoring of the channel. Before transmitting, the master checks the LSH table to select the slave and the packet size to transmit, such that both the transmissions to and from that slave have a low probability of error. By choosing the right packet size, the master is able to mask bad frequencies and does not need to change the hopping sequence in any way.
无线微蜂窝网络中基于频率前瞻和链路状态历史的干扰避免
本文提出了一种解决跳频室内无线通信系统(如蓝牙)干扰问题的方案。文献报道的其他方法包括调整跳频序列以避免坏频率,但它们不适合具有固定跳频序列的蓝牙。该方案基于频率前瞻性的概念,并将链路状态历史(LSH)保存为表。前瞻性是用来先验地知道在不久的将来可能用于传输的频率。LSH用于预测未来干扰的概率。本文给出了两种记录LSH的方法,第一种是基于从机接收的ack和nak,第二种是基于从机对信道的监控。在发送之前,主服务器检查LSH表,选择要发送的从服务器和数据包大小,这样从服务器和从服务器之间的传输都有较低的错误概率。通过选择正确的数据包大小,主机能够屏蔽坏频率,并且不需要以任何方式改变跳频序列。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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