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Multiple access interference properties of constant-envelope CDMA

机译:恒定包络CDMA的多址干扰特性

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CDMA systems transmitting multiple signals from a single source normally employ linear superposition of codes. The resulting signal has a high peak-to-average power ratio (PAPR), which is undesirable from a high power amplifier (HPA) viewpoint. Several techniques have been proposed to reduce PAPR and ease the HPA requirements. Among these, constant-envelope CDMA (CE-CDMA) is an alternative that eliminates envelope variation, achieving PAPR = 0 dB. It can use a saturating (Class C) amplifier that runs at lower peak power and may be more robust and inexpensive than the Class A HPA needed for linear superposition. The latter requires significant linear dynamic range and must operate at several dB output power backoff. Constant-envelope multiplex techniques are nonlinear and thus exhibit both a multiplexing efficiency loss—part of the price one pays for a substantial reduction in peak power—and multiple access interference (MAI) among the user signals. To date there has been no systematic, quantitative exploration of multiplexing efficiency and MAI in CE-CDMA. The principal results reported in this paper are the derivation of formulas for multiplexing loss and MAI in CE-CDMA and their use to discover, for the case of homogeneous users, multiplexing methods optimum with respect to minimizing the combined losses. A comparison of MAI for linearly multiplexed and CE-CDMA concludes the paper.
机译:从单个源发送多个信号的CDMA系统通常采用线性码叠加。所得信号具有较高的峰均功率比(PAPR),从高功率放大器(HPA)的角度来看,这是不希望的。已经提出了几种降低PAPR和减轻HPA要求的技术。其中,恒定包络CDMA(CE-CDMA)是消除包络变化的替代方案,可实现PAPR = 0 dB。它可以使用饱和(C类)放大器,该放大器以较低的峰值功率运行,并且可能比线性叠加所需的A类HPA更耐用,更便宜。后者需要很大的线性动态范围,并且必须在几个dB的输出功率回退下工作。恒定包络复用技术是非线性的,因此会表现出复用效率的损失(部分代价是要大幅降低峰值功率而付出的代价)以及用户信号之间的多址干扰(MAI)。迄今为止,还没有对CE-CDMA中的复用效率和MAI进行系统,定量的探索。本文报道的主要结果是推导CE-CDMA中的复用损耗和MAI公式,并将其用于发现同质用户的情况下,在最小化组合损耗方面最优的复用方法。总结了线性复用和CE-CDMA的MAI。

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  • 来源
    《IEEE Aerospace conference 》|2009年|1-19|共19页
  • 会议地点 Big Sky MT(US)
  • 作者

    Orr Richard S.;

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    SATEL LLC 9700 Great Seneca Highway Rockville MD 20850 USA;

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