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An Ultrasonic Through-Wall Communication System with Power Harvesting

机译:具有电力收获的超声波通信系统

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Electromagnetic "wireless" techniques are ineffective for communicating through a solid steel barrier due to the shielding effect of the metal. Although holes can be made in the barrier to allow wires to pass through, they are often undesirable because they can reduce the integrity of the barrier. In contrast, ultrasound propagates readily through steel and can be used to convey information without degrading the barrier. Since it may be inconvenient to periodically access the sensor side of the barrier, it is also desirable to make the sensor/communication system operate for an indefinite period without servicing. Power harvesting can be used to derive electric power for the circuits from the ultrasonic power applied at the other side of the barrier, making batteries unnecessary. This paper describes an ultrasonic communication system with power harvesting using two ultrasonic transducers and continuous-wave ultrasound techniques. Experimental results are presented, which were obtained using a 5.7cm thick steel block with 2.54cm piezoelectric transducers at 1MHz. The data shows reliable communication at rates of up to 55kbps and power delivery of over 0.25W.
机译:由于金属的屏蔽效果,电磁“无线”技术对于通过固体钢屏幕通信无效。尽管可以在屏障中制造孔以允许线通过,但它们通常是不希望的,因为它们可以降低屏障的完整性。相反,超声波通过钢容易地传播,并且可用于传送信息而不会降低屏障。由于可能是周期性地访问屏障的传感器侧的不方便,因此还希望使传感器/通信系统在无需维修的情况下为无限期运行。功率收获可用于从屏障另一侧施加的超声波功率导出电路的电力,使电池不必要。本文介绍了一种超声通信系统,采用两种超声换能器和连续波超声技术采用电力收获。提出了实验结果,使用5.7cm厚的钢块在1MHz处使用2.54cm压电换能器获得。数据以高达55kbps的速率显示可靠的通信,电源超过0.25W。

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