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Characterization of high performance silicon-based VMJ PV cells for laser power transmission applications

机译:用于激光功率传输应用的高性能硅基VMJ PV电池的特性

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摘要

Continuing improvements in the cost and power of laser diodes have been critical in launching the emerging fields of power over fiber (PoF), and laser power beaming. Laser power is transmitted either over fiber (for PoF), or through free space (power beaming), and is converted to electricity by photovoltaic cells designed to efficiently convert the laser light. MH GoPower's vertical multi-junction (VMJ) PV cell, designed for high intensity photovoltaic applications, is fueling the emergence of this market, by enabling unparalleled photovoltaic receiver flexibility in voltage, cell size, and power output. Our research examined the use of the VMJ PV cell for laser power transmission applications. We fully characterized the performance of the VMJ PV cell under various laser conditions, including multiple near IR wavelengths and light intensities up to tens of watts per cm~2. Results indicated VMJ PV cell efficiency over 40% for 9xx nm wavelengths, at laser power densities near 30 W/cm~2. We also investigated the impact of the physical dimensions (length, width, and height) of the VMJ PV cell on its performance, showing similarly high performance across a wide range of cell dimensions. We then evaluated the VMJ PV cell performance within the power over fiber application, examining the cell's effectiveness in receiver packages that deliver target voltage, intensity, and power levels. By designing and characterizing multiple receivers, we illustrated techniques for packaging the VMJ PV cell for achieving high performance (> 30%), high power (> 185 W), and target voltages for power over fiber applications.
机译:激光二极管的成本和功率的持续改进对于启动新兴的光纤功率(PoF)和激光功率发射领域至关重要。激光功率可以通过光纤(用于PoF)传输,也可以通过自由空间(功率束传输)传输,并通过旨在有效转换激光的光伏电池转换为电能。 MH GoPower的垂直多结(VMJ)光伏电池专为高强度光伏应用而设计,它通过在电压,电池尺寸和功率输出方面提供无与伦比的光伏接收器灵活性,推动了这一市场的兴起。我们的研究检查了VMJ PV电池在激光功率传输应用中的使用。我们充分表征了VMJ PV电池在各种激光条件下的性能,包括多种近红外波长和高达每厘米2瓦数的光强度。结果表明,在激光功率密度接近30 W / cm〜2的情况下,对于9xx nm波长,VMJ PV电池效率超过40%。我们还研究了VMJ PV电池的物理尺寸(长度,宽度和高度)对其性能的影响,在各种尺寸的电池上均显示出相似的高性能。然后,我们在光纤供电应用中评估了VMJ PV电池的性能,检查了在提供目标电压,强度和功率水平的接收器封装中该电池的有效性。通过设计和表征多个接收器,我们说明了用于封装VMJ PV电池的技术,以实现高性能(> 30%),大功率(> 185 W)以及用于光纤应用的目标电压。

著录项

  • 来源
    《 》|2016年|97330U.1-97330U.17|共17页
  • 会议地点 San Francisco CA(US)
  • 作者单位

    MH GoPower Co., Ltd., No. 6-2, Luke 3rd Rd., Luzhu District, Kaohsiung City 821, Taiwan;

    MH GoPower Co., Ltd., No. 6-2, Luke 3rd Rd., Luzhu District, Kaohsiung City 821, Taiwan;

    MH GoPower Co., Ltd., No. 6-2, Luke 3rd Rd., Luzhu District, Kaohsiung City 821, Taiwan;

    MH GoPower Co., Ltd., No. 6-2, Luke 3rd Rd., Luzhu District, Kaohsiung City 821, Taiwan;

    MH GoPower Co., Ltd., No. 6-2, Luke 3rd Rd., Luzhu District, Kaohsiung City 821, Taiwan;

    MH GoPower Co., Ltd., No. 6-2, Luke 3rd Rd., Luzhu District, Kaohsiung City 821, Taiwan;

    MH GoPower Co., Ltd., No. 6-2, Luke 3rd Rd., Luzhu District, Kaohsiung City 821, Taiwan;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Power over fiber; PoF; photovoltaic power converter; PPC; power beaming; laser power transmission; photonic power; photovoltaic cell;

    机译:光纤供电; PoF;光伏电源转换器PPC;功率发射激光功率传输光子功率光伏电池;

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