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Noise Suppression in OCDMA Networks using Nonlinear Optical Devices

机译:使用非线性光学器件的OCDma网络中的噪声抑制

摘要

Optical code division multiple access (OCDMA) is a multiplexing technique that has a number of inherent advantages that make it suitable for use in passive optical networks, such as allowing subscribers to transmit information in an asynchronous fashion over a singleudoptical fibre. This form of multiplexing can provide a higher degree of flexibility and simplicity in comparison to other techniques. However, due to the asynchronous nature of transmission, OCDMA networks suffer from multiple access interference (MAI) and optical beat noise which severely impairs system performance.ududA number of solutions have been proposed to mitigate these noise sources. Increasing the optical code lengths used can reduce the level of optical beat noise, however this isudgenerally at the expense of transmission speed and increased transmitter complexity. MAI suppression can be achieved through the use fibre-based nonlinear thresholders or optical time-gating. One problem with these solutions is the requirement of long lengths of nonlinear fibre that are susceptible to changes in environmental conditions. Therefore, this thesis focuses on the development and testing of a nonlinear optical receiver based on semiconductor devices for the suppression of noise in OCDMA systems. ududThe nonlinear optical process of two-photon absorption (TPA) in a commercially available 1.3 micron Fabry-P´erot laser is investigated as a method for optical thresholding in an OCDMA system. It is shown that the use of a saturable absorber (SA) directly before the TPA-based detector can provide additional suppression of MAI noise. However, the level of beat noise that is present on the optical signal can be increased due to the nonlinear responses of both devices. As a result, a gain-saturated semiconductor optical amplifier (SOA) is demonstrated as a method for the reduction of optical beat noise. It is shown that error-free performance can be achieved in an optical testbed designed to simulate an OCDMA system using an SA-SOA-TPA-based receiver. The performance improvement due to the suppression of MAI and beat noise using an SA-SOA receiver is examined in relation to a current fibre-based thresholding technique; a Mamyshev filter. It is shownudthat the SA-SOA receiver can offer a similar level of improvement when compared to the performance of a Mamyshev filter.
机译:光码分多址(OCDMA)是一种复用技术,具有许多固有的优点,使其适合在无源光网络中使用,例如允许用户以单根/多根光纤的异步方式传输信息。与其他技术相比,这种形式的多路复用可以提供更高的灵活性和简便性。但是,由于传输的异步特性,OCDMA网络遭受了多址干扰(MAI)和光学拍频噪声,这严重损害了系统性能。提议了许多解决方案来减轻这些噪声源。增加所使用的光代码长度可以降低光拍噪声的水平,但是,这通常是以传输速度和增加的发射机复杂性为代价的。可以通过使用基于光纤的非线性阈值器或光学时间门控来实现MAI抑制。这些解决方案的一个问题是需要很长的非线性纤维,其容易受到环境条件的影响。因此,本文重点研究了基于半导体器件的非线性光接收机的开发和测试,以抑制OCDMA系统中的噪声。 ud ud研究了在商用1.3微米Fabry-P´erot激光器中双光子吸收(TPA)的非线性光学过程,作为OCDMA系统中光学阈值处理的一种方法。结果表明,在基于TPA的检测器之前直接使用可饱和吸收器(SA)可以进一步抑制MAI噪声。但是,由于两个设备的非线性响应,可能会增加光信号上出现的拍频噪声水平。结果,证明了增益饱和的半导体光放大器(SOA)作为减少光学拍频噪声的方法。结果表明,在设计为使用基于SA-SOA-TPA的接收机模拟OCDMA系统的光学测试台上,可以实现无错误的性能。结合当前基于光纤的阈值技术,研究了由于使用SA-SOA接收机抑制MAI和拍音而导致的性能提高; Mamyshev过滤器。结果表明,与Mamyshev滤波器的性能相比,SA-SOA接收器可以提供相似的改进水平。

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    Dexter Karl J.;

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  • 年度 2010
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