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A BER based adaptive STFC MB-OFDM UWB system for WBAN applications

机译:用于WBAN应用的基于BER的自适应STFC MB-OFDM UWB系统

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A bit error rate (BER) estimation-based adaptive space-time-frequency coded (STFC) multiband orthogonal frequency division multiplexing ultra-wideband (MB-OFDM UWB) wireless body area network (WBAN) system is proposed in this paper. It is designed to improve the average BER performance for high data rate applications while maintaining a reasonably high throughput in body-to-external links of a WBAN. The performance improvement fundamentally translates to power saving at the transmitter and/or receiver, thus reducing battery requirements and size of WBAN devices. Two novel blocks, namely the BER estimation-based adaptive algorithm which controls the set of modulation, STFC coding rate, and power of signal constellations, and the linearly interpolated CM4 WBAN channel model are implemented in the proposed adaptive STFC MB-OFDM UWB WBAN system. Three sets of adaptive schemes are defined, each of which is determined by two BER thresholds, i.e. the lower and upper thresholds, which are in turns calculated from the non-adaptive average BER performance as the benchmark. Simulation results show a significant improvement in the performance and/or Tx/Rx power saving, with the cost of a slight reduction in the throughput.
机译:提出了一种基于误码率(BER)估计的自适应空时频编码(STFC)多频带正交频分复用超宽带(MB-OFDM UWB)无线人体局域网(WBAN)系统。它旨在提高高数据速率应用的平均BER性能,同时在WBAN的主体到外部链路中保持合理的高吞吐量。从根本上说,性能的提高可以节省发射器和/或接收器的功率,从而减少电池需求和WBAN设备的尺寸。在所提出的自适应STFC MB-OFDM UWB WBAN系统中,实现了两个新颖的模块,即基于BER估计的自适应算法,该算法控制调制集,STFC编码速率和信号星座图的功率,以及线性内插CM4 WBAN信道模型。 。定义了三组自适应方案,每组均由两个BER阈值确定,即下阈值和上限阈值,这些阈值又从非自适应平均BER性能作为基准来计算。仿真结果表明,在性能和/或Tx / Rx节能方面有显着改善,但吞吐量却略有降低。

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