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Zigbee baseband hardware modeling for Internet of Things IEEE 802.15.4 compliance

机译:ZigBee基带硬件建模IEEE 802.15.4合规性

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This paper is modeling the hardware for baseband communication in Internet of things (IoT) Chip with processor 32 bit RISCx. Based on IEEE 802.15.4 about Wireless Personal Area Networks (WPANs), for zigbee with frequency 2450 MHz we have to used Direct Sequence Spreading Spectrum (DSSS) and for the communication modulation we have to used Offset Quadrature Phase Shift Keying (O-QPSK). In this hardware modeling we used the AWGN (Additive White Gaussian Noise) and Rayleigh fading as part of non ideal system in the channel. In receiver we used costas loop to recover the carrier. as it is a hardware modeling, we compare Bit Error Rate (BER) between 6 bit and 8 bit. There is a big BER difference between the 6 bit system and the 8 bit system. 8 bit system has a better bit error rate but the chip area that it used is bigger. Contrary for the 6 bit, the chip area used is smaller but the bit error rate is worse than the 8 bit.
机译:本文采用处理器32位RISCX在物联网(IOT)芯片中为基带通信的硬件建模。基于IEEE 802.15.4关于无线个人区域网络(WPAN),对于频率2450 MHz的ZigBee我们必须使用直接序列扩展频谱(DSS)和用于通信调制我们必须使用偏移正交相移键控(O-QPSK )。在这种硬件建模中,我们使用了AWGN(添加性白色高斯噪声)和瑞利衰落作为通道中非理想系统的一部分。在接收器中,我们使用Costas循环来恢复载波。由于它是一个硬件建模,我们将误码率(BER)与6位和8位之间进行比较。 6位系统和8位系统之间存在大的差异。 8位系统具有更好的误码率,但它使用的芯片区域更大。与6位相反,所使用的芯片区域较小,但误码率比8位更差。

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