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Analysis of infrared wireless links employing multibeam transmitters and imaging diversity receivers

机译:使用多光束发射机和成像分集接收机的红外无线链路分析

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We analyze the improvements obtained in wireless infrared (IR) communication links when one replaces traditional single-element receivers by imaging receivers and diffuse transmitters by multibeam (quasi-diffuse) transmitters. This paper addresses both line-of-sight (LOS) and nonline-of-sight (non-LOS) IR links. We quantify link performance in terms of the transmitter power required to achieve a bit error rate (BER) not exceeding 10/sup -9/ with 95% probability. Our results indicate that in LOS links, imaging receivers can reduce the required transmitter power by up to 13 dB compared to single-element receivers. In non-LOS links, imaging receivers and multibeam transmitters can reduce the required transmitter power by more than 20 dB. Furthermore we discuss the use of multibeam transmitters and imaging receivers to implement space-division multiple access (SDMA). In a representative example with two users transmitting at a power sufficient to achieve a BER not exceeding 10/sup -9/ with 95% probability in the absence of cochannel interference, when SDMA is employed, the system can achieve a BER not exceeding 10/sup -9/ with a probability of about 88%.
机译:当人们用成像接收器代替传统的单元素接收器,而用多光束(准扩散)发射器代替扩散发射器时,我们分析了无线红外(IR)通信链路中获得的改进。本文介绍了视距(LOS)和非视距(non-LOS)IR链接。我们以达到95%概率不超过10 / sup -9 /的误码率(BER)所需的发射机功率来量化链路性能。我们的结果表明,在LOS链路中,与单元素接收机相比,成像接收机可以将所需的发射机功率降低多达13 dB。在非LOS链路中,成像接收器和多波束发射器可以将所需的发射器功率降低20 dB以上。此外,我们讨论了使用多波束发射器和成像接收器来实现空分多址(SDMA)。在一个有代表性的示例中,在没有同信道干扰的情况下,两个用户以足以实现不超过10 / sup -9 /的BER的功率进行传输的功率为95%,当采用SDMA时,系统可以实现不超过10 / s的BER。 sup -9 /的概率约为88%。

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