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Power Management and Data Rate Maximization in Wireless Energy Harvesting Sensors

机译:无线能量采集传感器中的电源管理和数据速率最大化

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This paper considers the problem of power management and throughput maximization for energy neutral operation when using an energy harvesting sensor (EHS) to send data over a wireless link. The EHS is assumed to be able to harvest energy at a constant rate, and use a fixed part of the energy harvested in a slot for measuring the channel state. The rest of the energy harvested is available for transmission, however, it can be stored in an inefficient battery if it is not fully utilized. The key constraint that the EHS needs to satisfy is energy neutrality, i.e., the expected energy drawn from the battery should equal the expected energy deposited into the battery. In this scenario, two popular models for data transmission are contrasted: the constant bit rate (CBR) model and the variable bit rate (VBR) model. In the CBR model, it is assumed that the EHS are designed to transmit data at a constant rate (using a fixed modulation and coding scheme) but are power-controlled. In the VBR model, the EHS selects both the transmit power and the data rate of transmission in each slot based on the channel instantiation. A framework under which the system designer can optimize several parameters of the EHS that determine the average data rate performance when the channel is Rayleigh fading is developed. Using this framework, the two transmission schemes are contrasted. It is shown that, with the right choice of parameter settings, the CBR scheme can perform nearly as well as the VBR scheme at significantly lowerrncomplextiy. The usefulness and validity of the framework developed is illustrated through simulations for specific examples.
机译:当使用能量收集传感器(EHS)通过无线链路发送数据时,本文考虑了能量中立运行的电源管理和吞吐量最大化问题。假设EHS能够以恒定速率收集能量,并使用在插槽中收集的固定能量来测量信道状态。收集的其余能量可用于传输,但是,如果未充分利用,则可以存储在效率低下的电池中。 EHS需要满足的关键约束是能量中和,即从电池中提取的预期能量应等于沉积到电池中的预期能量。在这种情况下,对比了两种流行的数据传输模型:恒定比特率(CBR)模型和可变比特率(VBR)模型。在CBR模型中,假定EHS被设计为以恒定速率(使用固定的调制和编码方案)传输数据,但受到功率控制。在VBR模型中,EHS根据信道实例选择每个时隙中的发射功率和传输数据速率。开发了一个框架,系统设计人员可以在该框架下优化EHS的几个参数,这些参数确定信道为瑞利衰落时的平均数据速率性能。使用该框架,将两种传输方案进行了对比。结果表明,在正确选择参数设置的情况下,CBR方案的性能几乎可以与VBR方案媲美,而复杂度却大大降低。通过对特定示例的仿真说明了所开发框架的有用性和有效性。

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