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Synchronous Overloaded System for the Uplink of Cellular CDMA with Unequal Chip Delay Spreading (UCDS)

机译:具有不等芯片延迟扩展的蜂窝CDMA上行链路同步超载系统(UCD)

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Channel overloading in Code Division Multiple Access (CDMA) facilitates to accommodate more number of users than the assigned spreading factor N. Our proposal for a synchronous CDMA technique for the uplink of a cellular system over additive white gaussian noise (AWGN) channel achieves oversaturation by using the same set of orthogonal Walsh Hadamard codes and a receiver with lower complexity. The technique involves dividing the total number of active users into G groups, each with L users. Each user in a group is assigned the same signature sequence but with different chip duration. Users in a group can be classified as Primary and Secondary. The Primary user avails the spreading sequence with the maximum chip duration Tc. The rest L-1 (secondary) users are assigned the same code with chip duration as multiples of Tc/L. Unlike conventional Direct Sequence CDMA (DS-CDMA), all the users participate in spreading using the proposed Unequal Chip Delay Spreading (UCDS) technique. The receiver contains a switching unit to separate the received stream into L sub-streams followed by the detection process using a simple multi user detector. On the other hand, L levels of Unequal Error Protection (UEP) can be attained due to the unequal amount of multiple access interference (MAI) existing in alternate chip interval during transmission. Unequal chip delay spreading finally enables it to have a L-fold increase in the user data rate at the receiving end as compared to that of the transmission.
机译:码分中的通道过载多载(CDMA)有助于适应更多的用户,而不是指定的扩展因子N.我们对蜂窝系统的上行链路上的同步CDMA技术的提议通过添加白色高斯噪声(AWGN)信道来实现过饱和使用相同的正交沃尔什哈拉德代码和具有较低复杂性的接收器。该技术涉及将活跃用户的总数除以G组,每个都与L用户一起。组中的每个用户分配相同的签名序列,但具有不同的芯片持续时间。组中的用户可以被分类为主和辅助。主要用户利用最大芯片持续时间Tc的扩展序列。其余L-1(辅助)用户被分配了与芯片持续时间相同的代码,如TC / L的倍数。与传统的直接序列CDMA(DS-CDMA)不同,所有用户都参与使用所提出的不等芯片延迟扩展(UCDS)技术的扩展。接收器包含切换单元,以将接收的流分离为L子流,然后使用简单的多用户检测器进行检测处理。另一方面,由于在传输过程中备用芯片间隔中存在的多个访问干扰(MAI),可以实现L级别不等误差保护(UEP)。与传输相比,不等芯片延迟扩展最终使其在接收端的用户数据速率下具有L折叠增加。

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