Ambient backscatter communications have been identified for ultra-low energy wireless communications. Indeed, a tag can send a message to a reader without emitting any wave and without battery, simply by backscattering the waves generated by a source. In the simplest implementation of such a system, the tag sends a binary message by oscillating between two states and the reader detects the bits by comparing the two distinct received powers. In this paper, for the first time, we propose to study an ambient backscatter communication system, in the presence of a diffusing surface, a simple flat panel that diffuses in all directions. We establish the analytical closed form expression of the power contrast in the presence of the surface. We show that the diffusing surface improves the power contrast. Moreover our approach allows us to express the contrast to noise ratio, and therefore to establish the BER performance. Furthermore, we derive the optimum source transmit power for a given target power contrast. This makes it possible to quantify the amount of energy that can be saved at the source side, thanks to the diffusing surface.
翻译:用于超低能量无线通信的反向散射通信已被确定为超低能量无线通信。 事实上, 标签可以在不释放任何波和无电池的情况下向读者发送信息, 只需对源产生的波浪进行反射即可。 在最简单的实施中, 标签会通过在两个州和读者之间摇动来传递二进信息, 通过比较两个不同的接收能力来检测比特。 在本文中, 我们首次建议研究一个环境反向散射通信系统, 其存在的是漂浮的表面, 一个简单的平面面面板, 能够向所有方向扩散。 我们在地表上建立电源对比的分析封闭表达方式。 我们显示, 漂移的表面可以改善电力对比。 此外, 我们的方法使我们能够表达与噪声比的对比, 从而建立 BER 性。 此外, 我们为给目标电量对比而获取最佳源传输能力。 这样就可以量化源面可以保存的能量量, 因为它是悬浮的表面。