首页> 外文会议>OCEANS 2016 MTS/IEEE Monterey >Turbid-harbor demonstration of transceiver technologies for wide dynamic range undersea laser communications
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Turbid-harbor demonstration of transceiver technologies for wide dynamic range undersea laser communications

机译:用于大动态范围海底激光通信的收发器技术的浊港演示

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Undersea laser communications represent a promising area of research with a large set of applications. Wide dynamic range receivers are necessary to operate through a range of possible water qualities and link distances. In the signal-starved regime, photon-counting photomultiplier tubes (PMTs) are a key technology for high-sensitivity communications. When more signal is available, linear avalanche photodiodes (APDs) provide an opportunity for higher-rate communication. We have designed a receiver terminal employing both kinds of detectors to show robust operation over nearly two orders of magnitude in power and data rate. An optical link including this receiver terminal was submerged in Narragansett Bay, RI to demonstrate underwater optical communication over several days. The PMT receiver demonstrated robust, error-free performance over channel rates from 1.302 Mbaud to 10.416 Mbaud for received optical power levels ranging from -84.1 dBm to -75.3 dBm. The PMT link demonstrated an error-free user rate of 8.68 Mb/s. This corresponded to nearly-ideal detector efficiency on the order of one detected photon per bit. The PMT receiver was contained entirely within the submerged enclosure and demonstrated full real-time decoding, including strong forward error correction. A low-power transmitter was used to demonstrate a link with loss equivalent to 18 extinction lengths. With moderately-powered transmitters, this distance could be extended to 22.4 extinction lengths. The PMT receiver was capable of operating at near-theoretical limits during the day and night. Its multi-rate operation demonstrated the capability of trading sensitivity for data rate efficiently. With the same low-power transmitter, the APD receiver achieved a bit error rate less than 1×10-9 at 125 Mbaud. Furthermore, it achieved an error rate correctable by forward error correction for a link with loss equivalent to 9 extinction lengths.
机译:海底激光通信代表着具有广泛应用领域的有前途的研究领域。宽动态范围的接收器对于在各种可能的水质和链路距离范围内运行是必不可少的。在信号匮乏的情况下,光子计数光电倍增管(PMT)是高灵敏度通信的关键技术。当有更多信号可用时,线性雪崩光电二极管(APD)为更高速率的通信提供了机会。我们设计了一种接收器终端,它同时使用两种检测器,以显示出在功率和数据速率上接近两个数量级的鲁棒性操作。包含此接收器终端的光链路被淹没在罗兰岛的纳拉甘西特湾,以展示几天内的水下光通信。 PMT接收器在-84.1 dBm至-75.3 dBm的接收光功率水平下,在1.302 Mbaud至10.416 Mbaud的信道速率下展示了强大,无错误的性能。 PMT链接显示出8.68 Mb / s的无错误用户速率。这相当于接近理想的检测器效率,约为每位一个检测到的光子。 PMT接收器完全包含在浸入式外壳中,并演示了完整的实时解码,包括强大的前向纠错功能。使用低功率发射机来演示链路损耗等于18个消光长度的链路。对于中等功率的发射器,该距离可以延长到22.4灭绝长度。 PMT接收器能够在白天和黑夜以接近理论的极限运行。它的多速率操作证明了有效地对数据速率进行交易敏感性的能力。使用相同的低功率发送器,APD接收器在125 Mbaud时的误码率小于1×10-9。此外,对于具有等于9个消光长度的损耗的链路,它实现了可通过前向纠错来纠正的误码率。

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