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Enhanced PHY symbol structure based on the IEEE 802.15.4a standardization and orthogonal pulses for 3D positioning

机译:基于IEEE 802.15.4a标准化和用于3D定位的正交脉冲的增强型PHY符号结构

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According to IEEE 802.15.4a standardization, an ultra wideband PHY symbol is capable of carrying two bits of information and only one pulse shall be transmitted in each symbol. To prevent inter symbol interference caused by multipath effect, the guard interval is present between the possible burst positions. In order to make full use of the symbol for estimating the azimuth and the elevation of target, we can add additional information at the guard interval position, if the pulse used at the possible burst position is different from the pulse used at the guard interval position. Using the orthonormality between the multiple pulses, furthermore, inter symbol interference can be avoided at the correlation receiver. In this paper, as the first step for estimating the azimuth and the elevation information, we propose a novel PHY symbol structure for IR-UWB system based on IEEE 802.15.4a standardization and orthogonal pulses to enhance the data rates without the bit-error-rate (BER) performance degradation. In the proposed scheme, the pulse used at the possible burst position is the modified hermite polynomial (MHP) pulse of order n equal to 3 and the pulse used at guard interval position is the MHP pulse of order n equal to 4. The performance of the proposed structure is evaluated by computer simulations over the IEEE 802.15.4a channel model. Simulation results show that the proposed symbol structure with orthogonal pulses can double the data rates of the systems without BER performance degradation.
机译:根据IEEE 802.15.4a标准化,超宽带PHY符号能够承载两位信息,并且每个符号中只能发送一个脉冲。为了防止由多径效应引起的符号间干扰,在可能的突发位置之间存在保护间隔。为了充分利用符号来估计目标的方位角和仰角,如果在可能的突发位置使用的脉冲与在保护间隔位置使用的脉冲不同,我们可以在保护间隔位置添加其他信息。此外,利用多个脉冲之间的正交性,可以避免在相关接收机处的码元间干扰。在本文中,作为估算方位角和仰角信息的第一步,我们提出了一种基于IEEE 802.15.4a标准化和正交脉冲的IR-UWB系统的新型PHY符号结构,以提高数据速率而不会出现误码现象。速率(BER)性能下降。在提出的方案中,在可能的突发位置使用的脉冲是n等于3的修改过的厄米多项式(MHP)脉冲,在保护间隔位置使用的脉冲是n等于4的MHP脉冲。通过IEEE 802.15.4a信道模型上的计算机仿真评估了提出的结构。仿真结果表明,所提出的正交脉冲符号结构可以使系统的数据速率增加一倍,而不会降低BER性能。

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