Information and Energy Transmission with Experimentally-Sampled Harvesting Functions

Daewon Seo, L. Varshney
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引用次数: 3

Abstract

This paper considers the problem of simultaneous information and energy transmission (SIET), where the energy harvesting function is only known experimentally at sample points. We investigate the performance loss due to this partial knowledge of the harvesting function in terms of transmitted energy and information. In particular, we assume harvesting functions are a class of Sobolev space and consider two cases, where experimental samples are either taken noiselessly or in the presence of noise. Using constructive function approximation and regression methods for noiseless and noisy samples respectively, we show that the worst loss in energy transmission vanishes asymptotically as the number of samples increases. Similarly, the loss in information rate vanishes in the interior of the energy domain, however, does not always vanish at maximal energy.
具有实验采样采集函数的信息和能量传输
本文考虑了同时信息和能量传输(SIET)问题,其中能量收集函数仅在样本点上实验已知。我们从传输能量和信息的角度研究了由于收集函数的部分知识而导致的性能损失。特别地,我们假设收获函数是一类Sobolev空间,并考虑两种情况,其中实验样本要么是无噪声的,要么是有噪声的。利用构造函数近似和回归方法分别对无噪声和有噪声样本进行了分析,结果表明,随着样本数量的增加,能量传输的最大损失逐渐消失。同样,信息率的损失在能量域内部消失,但并不总是在最大能量处消失。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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