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首页> 外文期刊>Sensors Journal, IEEE >Improved Circuit Design of Analog Joint Source Channel Coding for Low-Power and Low-Complexity Wireless Sensors
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Improved Circuit Design of Analog Joint Source Channel Coding for Low-Power and Low-Complexity Wireless Sensors

机译:低功耗和低复杂度无线传感器的模拟联合源通道编码的改进电路设计

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摘要

To enable low-power and low-complexity wireless monitoring, an improved circuit design of Analog Joint Source Channel Coding (AJSCC) is proposed for wireless sensor nodes. This innovative design is based on Analog Divider Blocks (ADB) with tunable spacing between AJSCC levels. The ADB controls the switching between two types of Voltage Controlled Voltage Sources (VCVS). LTSpice simulations have been performed to evaluate the performance of the circuit, and the power consumption and circuit complexity of this new ADB-based design have been compared with our previous parallel-VCVS design. It is found that this improved circuit design based on ADB outperforms the design based on parallel VCVS for a large number of AJSCC levels (≥16), both in terms of power consumption as well as circuit complexity, thus enabling persistent and higher temporal/spatial resolution environmental sensing.
机译:为了实现低功耗和低复杂度的无线监控,提出了一种针对无线传感器节点的模拟联合源通道编码(AJSCC)的改进电路设计。该创新设计基于模拟分频器模块(ADB),且AJSCC电平之间的间距可调。 ADB控制两种类型的电压控制电压源(VCVS)之间的切换。进行了LTSpice仿真以评估电路性能,并将这种基于ADB的新设计的功耗和电路复杂度与我们以前的并行VCVS设计进行了比较。我们发现,在功耗和电路复杂性方面,针对大量AJSCC级别(≥16)的基于ADB的改进电路设计均优于基于并行VCVS的设计,从而实现了持久且更高的时间/空间分辨率环境传感。

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