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Interference mitigation proposals exploiting antenna diversity using space time block codes for Bluetooth enabled devices

机译:针对支持蓝牙的设备,使用空时分组码来利用天线分集的干扰缓解方案

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摘要

Previous research work has focused on residential coverage and achievable data rates using the Bluetooth personal area network (PAN) standard. To meet the bit rate needs of future consumer electronic devices, M-PSK modulation schemes were proposed as likely candidates for high data rate Bluetooth extension. Frequency hopping statistics obtained for both the 79-hop and 23-hop systems in Bluetooth for data medium (DM) and data high (DH) packets in asynchronous mode show a clear need for mitigating interference. This can be achieved by employing synchronous transmissions in order to obtain reliable throughputs, particularly for time-bounded devices. This paper investigates the advantages of exploiting antenna diversity using space time block codes (STBC) with maximum likelihood decoding for high data rate Bluetooth enabled devices in synchronous and asynchronous transmissions. Results are presented for Bluetooth systems employing no antenna diversity and systems employing two transmit and two receive antennas using STBC. Results show that the reliability of both time-bounded and non-time bounded Bluetooth enabled devices can be enhanced by exploiting STBC coupled with suitable interference cancellation techniques.
机译:先前的研究工作集中在使用蓝牙个人局域网(PAN)标准的住宅覆盖范围和可达到的数据速率上。为了满足未来消费电子设备的比特率需求,提出了M-PSK调制方案作为高数据速率蓝牙扩展的可能候选方案。在蓝牙中针对异步模式下的数据介质(DM)和数据高(DH)数据包在蓝牙的79跳和23跳系统中获得的跳频统计数据表明,显然需要缓解干扰。这可以通过采用同步传输以获得可靠的吞吐量来实现,特别是对于有时间限制的设备。本文研究了使用空时分组码(STBC)和最大似然解码在同步和异步传输中启用高数据速率蓝牙的设备中利用天线分集的优势。给出了不使用天线分集的蓝牙系统和使用STBC使用两个发射和两个接收天线的系统的结果。结果表明,通过将STBC与适当的干扰消除技术结合使用,可以增强有时间限制和无时间限制的蓝牙设备的可靠性。

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