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首页> 外文期刊>Transactions of the ASABE >DIELECTRIC SPECTROSCOPY OF HONEYDEW MELONS FROM 10 MHz TO 1.8 GHz FOR QUALITY SENSING
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DIELECTRIC SPECTROSCOPY OF HONEYDEW MELONS FROM 10 MHz TO 1.8 GHz FOR QUALITY SENSING

机译:从10 MHz到1.8 GHz的蜜瓜的介电谱用于质量检测

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Honeydew melons were grown and harvested with a range of maturities for measurement of tissue permittivities (dielectric constant and loss factor) to study possible correlations between the dielectric properties and soluble solids (sweetness) for nondestructive sensing of maturity. Permittivities of tissue samples from 38 melons were measured at 25℃ over the frequency range from 10 MHz to 1.8 GHz along with refractometer determinations of soluble solids content (SSC), tissue density, and moisture content. A high correlation (r = 0.96) was found between SSC and the permittivity as expressed in a complex-plane plot of the two components of the relative complex permittivity, each divided by SSC. Through this mathematical relationship, SSC can be calculated from measured permittivity values independent of tissue density and moisture content. Moderate correlations were noted between dielectric constant and SSC at 10 MHz and between the loss factor and SSC at 1.8 GHz. Correlations between the dielectric properties and both moisture content and tissue density were very low. The correlation between tissue density and SSC was also very low. A high correlation was noted between SSC and moisture content, with SSC decreasing as moisture content increased. Problems in using the high correlation between permittivity and SSC for practical, nondestructive sensing of honey dew melon maturity as determined by SSC are also considered.
机译:生长并收获具有一定范围成熟度的蜜瓜,以测量组织介电常数(介电常数和损耗因子),以研究介电特性和可溶性固形物(甜度)之间的可能相关性,以进行成熟度的无损检测。在25℃,10 MHz至1.8 GHz的频率范围内,测量了38个甜瓜的组织样品的介电常数,并用折光仪测定了可溶性固形物(SSC),组织密度和水分含量。在SSC与介电常数之间发现了高度相关性(r = 0.96),用相对复介电常数的两个分量的复平面图表示,每个分量均被SSC除以。通过这种数学关系,可以根据测得的介电常数值计算SSC,而与组织密度和水分含量无关。注意到在10 MHz时介电常数和SSC之间以及在1.8 GHz时损耗因子和SSC之间存在中等相关性。介电性能与水分含量和组织密度之间的相关性非常低。组织密度和SSC之间的相关性也很低。 SSC与水分含量之间存在高度相关性,SSC随着水分含量的增加而降低。还考虑了使用介电常数和SSC之间的高相关性来实现SSC确定的对蜜露瓜成熟度的实用,无损检测的问题。

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