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Multiplex Modulation Techniques for a Navigation Constellation Simulator

机译:导航星座模拟器的多路复用调制技术

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Nowadays, GNSS signals offer different services on the same signal frequency band. This requires for at least three components to be multiplexed to the same signal. The system designer is facing the challenge to combine multiple signal components to achieve a constant envelope composite signal with the highest combination efficiency. Several equivalent mathematical descriptions of this signal type are known. In addition, there are various algorithms to find the optimal solution related to the minimization of the undesired inter-modulation products. The objective of this paper is to analyze different mathematical representations of the multiplex scheme and identify the most suitable one. The goal is to find a hardware efficient solution which can handle all current state-of-art and future multiplexing schemes. The latter part is fundamental to implement it in a Navigation Constellation Simulator with the aim to support all existing and future GNSS signals with this multiplex schema. The evaluation of the optimal multiplex schemes is an ongoing process and it is probable that the solution is based on numerical simulations. A simulator can contribute to the verification process in regards to non ideal signals.
机译:如今,GNSS信号在相同的信号频带上提供不同的服务。这需要至少三个要复用到相同信号的组件。系统设计器正面临组合多个信号分量以实现具有最高组合效率的恒定包络复合信号的挑战。已知几个信号类型的等同数学描述。此外,还有各种算法来找到与最小化不期望的互连产品的最小化相关的最佳解决方案。本文的目的是分析多路复用方案的不同数学表示,并识别最合适的数学表示。目标是找到一个硬件高效解决方案,可以处理所有最新的最先进和未来的复用方案。后半部分是在导航星座模拟器中实施它的基础,其目的是支持所有现有和未来的GNSS信号与此多路复用模式。对最佳多路复用方案的评估是持续的过程,并且可以基于数值模拟。模拟器可以有助于对非理想信号的验证过程。

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