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Solving the near-far problem in dynamic frequency hopping-optical code division multiple access using power control

机译:使用电源控制解决动态跳频 - 光学码分区多次访问中的近景问题

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In this study, a distributed power control algorithm is proposed for Dynamic Frequency Hopping Optical-CDMA (DFH-OCDMA) system. In general, the DFH-OCDMA can support higher number of simultaneous users compared to other OCDMA techniques. However, the performance of such system degrades significantly as the received power does lower than its minimum threshold. This may obviously occur in a DFH-OCDMA network with near-far problem which consist of different fiber lengths among the users, that resulting to unequal power attenuation. The power misdistribution among simultaneous active users at the star coupler would degrade the Bit Error Rate (BER) performance for users whose transmitting signals with longer fiber lengths. In order to solve these problems, we propose an adaptive distributed power control technique for DFH-OCDMA to satisfy the target Signal to Noise Ratio (SNR) for all users. Taking into account the noise effects of Multiple Access Interference (MAI), Phase Induced Intensity Noise (PIIN) and shot noise, the system can support 100% of users with power control as compared to 33% without power control when the initial transmitted power was −1dBm with 30 simultaneous users.
机译:在该研究中,提出了一种用于动态跳频光CDMA(DFH-OCDMA)系统的分布式功率控制算法。通常,与其他OCDMA技术相比,DFH-OCDMA可以支持更多的同时使用者。然而,随着所接收的功率低于其最小阈值,这种系统的性能显着降低。这可能在DFH-OCDMA网络中发生了近迄今的问题,该问题由用户之间的不同纤维长度组成,这导致功率衰减不等。 Star耦合器的同时活动用户之间的电力误报将使用户发送较长光纤长度的信号的误码率(BER)性能。为了解决这些问题,我们为DFH-OCDMA提出了一种自适应分布式功率控制技术,以满足所有用户的目标信号到噪声比(SNR)。考虑到多次接入干扰(MAI)的噪声效应,相位诱导的强度噪声(PIIN)和射击噪声,系统可以支持100%的电源控制用户,而当初始传输功率时,无功率控制的33% -1dbm,30个同时使用30个。

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