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Spectral sharing across 2G-3G systems

机译:跨2G-3G系统的频谱共享

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3G schemes with large bandwidth occupancy (e.g. UMTS) are gradually being introduced in response to the growing demand for non-voice services. Meanwhile, 2G systems (e.g., GSM, IS-95) still represent the main source for profit of carriers, and continues to exist for years to come. As a result, a coexistence of 2G and 3G systems is emerging that is likely to last for at least a few years. To optimize spectral efficiency, we show how a 2G/3G sharing strategy enables corporations to make optimal use of the 2G/3G spectral bands that they own. Specifically, we propose an efficient 2G/3G spectral sharing satisfying the following criteria: (1) the sharing strategy provides flexible system capacity over noncontiguous bandwidth, (2) it is able to dynamically update quantities of borrowed spectrum and borrowing duration, and (3) it ensures both lender and borrower to optimize their spectral efficiency and revenues. Specifically, assuming that 2G and 3G networks are DS-CDMA based, we propose an efficient technique supporting spectral sharing across networks by: (1) utilizing a new family of orthogonal spreading codes labeled carrier interferometry (CI) codes, capable of serving as a flexible replacement for the usual Hadamard-Walsh (HW) code; and (2) replacing the usual sinc(/spl middot/) and raised cosine chip shape by a multi-carrier chip shape. Simulation results show a significant beneficial effect via the proposed spectral sharing, e.g., increased capacity of 50% and 100% (in terms of numbers of users) with no loss in BER performance.
机译:随着对非语音服务的需求不断增长,正在逐步引入具有大带宽占用的3G方案(例如UMTS)。同时,2G系统(例如GSM,IS-95)仍然是运营商获利的主要来源,并且在未来几年仍将继续存在。结果,出现了可能持续至少几年的2G和3G系统的共存。为了优化频谱效率,我们展示了2G / 3G共享策略如何使公司充分利用其拥有的2G / 3G频谱。具体来说,我们提出一种满足以下条件的有效2G / 3G频谱共享:(1)共享策略可在非连续带宽上提供灵活的系统容量;(2)能够动态更新借用频谱的数量和借用持续时间;以及(3 ),确保贷方和借方双方都能优化其频谱效率和收入。具体来说,假设2G和3G网络是基于DS-CDMA的,我们提出了一种有效的技术,可通过以下方式支持跨网络的频谱共享:(1)利用标记为载波干涉术(CI)码的正交扩展码新系列,该功能可以用作灵活替换通常的Hadamard-Walsh(HW)代码; (2)用多载波码片形状代替通常的sinc(/ spl middot /)和升余弦码片形状。仿真结果显示了通过提议的频谱共享产生的显着有益效果,例如,容量增加了50%和100%(就用户数量而言),而BER性能没有损失。

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