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首页> 外文期刊>Wireless personal communications: An Internaional Journal >Optimization Between Estimation Error and Transmit Energy in Cross-Correlation Based Underwater Network Cardinality Estimation
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Optimization Between Estimation Error and Transmit Energy in Cross-Correlation Based Underwater Network Cardinality Estimation

机译:基于跨相关的水下网络基数估计估计误差与传输能量的优化

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摘要

Network cardinality is a very crucial factor to ensure proper functionality of a communications network. Due to the harsh underwater environment, cardinality estimation of underwater wireless communications network using conventional protocol based methods of terrestrial networks is very challenging and inefficient. Hence, a cross-correlation based estimation approach using Gaussian signals is applied for this purpose. To obtain better performance using this estimation approach, it is assumed that the length of the signals is infinity, which is practically impossible because it implies infinite transmit energy. For this reason, it is required to investigate the effect of various signal length (N (s)) on estimation performance. In process of achieving this goal, a relation between the N (s) and estimation error is derived in this paper. Using this relationship, optimization between estimation error and transmit energy is obtained as N (s) is an energy related term in the estimation process.
机译:网络基数是一种非常重要的因素,可以保证通信网络的正常功能。由于苛刻的水下环境,利用基于传统的地面网络方法的水下无线通信网络的基数估计非常具有挑战性和效率低。因此,为此目的应用了使用高斯信号的基于互相关的估计方法。为了获得使用该估计方法的更好的性能,假设信号的长度是无限的,这实际上是不可能的,因为它意味着无限的传输能量。因此,需要研究各种信号长度(n(s))对估计性能的影响。在实现这一目标的过程中,本文派生了n(s)和估计误差之间的关系。使用这种关系,获得估计误差和传输能量之间的优化,因为n(s)是估计过程中的能量相关术语。

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