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Optimum transform-domain detection for multi-carrier spread spectrum based on partial-band interference models

机译:基于部分带干扰模型的多载波扩频最优变换域检测

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Interfering signals in radio communication systems can assume a variety of forms. To excise interference, the use of models that are simple and general enough to cover its many forms, yet offer low detector implementation complexity and excellent performance are prefered. One such generic model is partial-band interference, which covers narrowband through to co-channel interference conditions. Two models are examined, Gaussian partial-band and sinusoidal partial-band interference in the presence of AWGN. The performance of various forms of optimum detector based on these models is examined and compared with conventional ad-hoc interference rejection techniques through simulation. In moderate to heavily-interfered channels, the model-based detection schemes can out-perform conventional techniques with minimal additional processing requirements. Furthermore, the simulation comparison studies give valuable insight into the relative merits and design weaknesses of both the proposed and ad-hoc detector structures.
机译:无线电通信系统中的干扰信号可以采取多种形式。为了消除干扰,首选使用足够简单且通用的模型来覆盖其多种形式,同时又要提供较低的检测器实现复杂性和出色的性能。一种这样的通用模型是部分带干扰,它涵盖了从窄带到同信道的干扰情况。研究了两种模型,即存在AWGN时的高斯部分频带和正弦部分频带干扰。对基于这些模型的各种形式的最佳检测器的性能进行了检查,并通过仿真将其与常规的临时干扰抑制技术进行了比较。在中等到严重干扰的信道中,基于模型的检测方案可以以最小的附加处理要求胜过传统技术。此外,仿真比较研究为拟议和特设检测器结构的相对优缺点和设计劣势提供了宝贵的见识。

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