Hayward Thomas J, Yang T C
Naval Research Laboratory, Washington, DC 20375, USA.
J Acoust Soc Am. 2007 Sep;122(3):1652. doi: 10.1121/1.2749709.
Acoustic communication channel capacity determines the maximum data rate that can be supported by an acoustic channel for a given source power and source/receiver configuration. In this paper, broadband acoustic propagation modeling is applied to estimate the channel capacity for a time-invariant shallow-water waveguide for a single source-receiver pair and for vertical source and receiver arrays. Without bandwidth constraints, estimated single-input, single-output (SISO) capacities approach 10 megabitss at 1 km range, but beyond 2 km range they decay at a rate consistent with previous estimates by Peloquin and Leinhos (unpublished, 1997), which were based on a sonar equation calculation. Channel capacities subject to source bandwidth constraints are approximately 30-90% lower than for the unconstrained case, and exhibit a significant wind speed dependence. Channel capacity is investigated for single-input, multi-output (SIMO) and multi-input, multi-output (MIMO) systems, both for finite arrays and in the limit of a dense array spanning the entire water column. The limiting values of the SIMO and MIMO channel capacities for the modeled environment are found to be about four times higher and up to 200-400 times higher, respectively, than for the SISO case. Implications for underwater acoustic communication systems are discussed.
声学通信信道容量决定了在给定源功率和源/接收器配置下,声学信道能够支持的最大数据速率。在本文中,宽带声学传播建模被用于估计单源-接收器对以及垂直源和接收器阵列的时不变浅水波导的信道容量。在没有带宽限制的情况下,估计的单输入单输出(SISO)容量在1千米距离处接近10兆比特,但在超过2千米距离时,它们以与佩洛奎因和莱因霍斯(未发表,1997年)之前基于声纳方程计算的估计一致的速率衰减。受源带宽限制的信道容量比无限制情况大约低30% - 90%,并且表现出显著的风速依赖性。针对单输入多输出(SIMO)和多输入多输出(MIMO)系统研究了信道容量,包括有限阵列以及跨越整个水柱的密集阵列的极限情况。在所建模的环境中,SIMO和MIMO信道容量的极限值分别比SISO情况高约四倍和高达二百至四百倍。文中讨论了对水下声学通信系统的影响。