首页> 外文期刊>Journal of dairy science >Devices used by automated milking systems are similarly accurate in estimating milk yield and in collecting a representative milk sample compared with devices used by farms with conventional milk recording
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Devices used by automated milking systems are similarly accurate in estimating milk yield and in collecting a representative milk sample compared with devices used by farms with conventional milk recording

机译:与带有常规牛奶记录的农场使用的设备相比,自动挤奶系统使用的设备在估算牛奶产量和收集代表性牛奶样品方面具有类似的精确度

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摘要

Information on accuracy of milk-sampling devices used on farms with automated milking systems (AMS) is essential for development of milk recording protocols. The hypotheses of this study were (1) devices used by AMS units are similarly accurate in estimating milk yield and in collecting representative milk samples compared with devices used by certified milk recording providers on farms with conventional milking systems (CMS) and (2) devices used on both AMS and CMS comply with accuracy criteria described by the New Zealand Standard and by the International Committee of Animal Recording (ICAR). Milk recording data from 5 AMS farms were collected during 13 milk recording test days between December 2011 and February 2013. Milk yield was estimated by ICAR-approved milk meters on AMS units. Milk samples were collected over a 48-h period and submitted to an off-site certified laboratory for milk composition analysis. Data were also collected manually from 5 to 10 cows per AMS unit; a complete milking of a cow was weighed to serve as gold standard for milk yield, and 3 milk samples per cow milking were collected and analyzed in the laboratory to serve as gold standards for milk composition. A similar procedure was used during 6 milk recording occasions with devices used during conventional milk recording at a CMS research farm. Farm type, breed, season, and region did not appear to affect accuracy of devices used on AMS units. Milk meters used by AMS units complied with ICAR limits in 12.5 and 25% of the milk recording test days for test bucket weights between 2 and 10 kg and for test bucket weights >10 kg, respectively. These percentages were 52 and 42%, respectively, for devices used on CMS. Analyzing all samples as one milk recording test day, 1.4% fell outside the 20% difference band for AMS compared with 1.1% of the milk samples for CMS. Devices used by AMS complied with ICAR in 73% of the milk recording test days for fat percentage, compared with 42% of the milk recording test days by devices used at the CMS farm. When analyzing all milk samples as one milk recording test day, 3.5% of the milk samples fell outside the 99% ICAR limit for AMS compared with 17.2% of the milk samples for CMS. Applying the ICAR standards for fat percentage to crude protein percentage and SCC, devices used on AMS were accurate in estimating crude protein percentage but not in estimating SCC. Thus, devices on AMS units did not comply with national nor ICAR standards with regard to milk yield and fat percentage. However, devices used on AMS were similarly or more accurate compared with devices used during conventional milk recording. It is proposed that devices used on AMS units, when calibrated regularly and when set up according to the manufacturer's instruction, have similar or improved accuracy compared with CMS devices. Because the New Zealand industry accepts data from devices currently used by certified providers for milk recording on CMS farms, results imply that the AMS devices should also be permitted to be used for milk recording.
机译:有关具有自动挤奶系统(AMS)的农场中使用的牛奶采样设备的准确性的信息对于开发牛奶记录协议至关重要。这项研究的假设是:(1)与具有常规挤奶系统(CMS)的农场中认证奶粉记录提供者使用的设备相比,AMS单位使用的设备在估算牛奶产量和收集代表性牛奶样品方面具有类似的准确性;在AMS和CMS上使用的准确性均符合新西兰标准和国际动物记录委员会(ICAR)所述的准确性标准。在2011年12月至2013年2月的13个牛奶记录测试日内,收集了来自5个AMS农场的牛奶记录数据。牛奶产量是由ICAR批准的AMS牛奶表估算的。在48小时内收集牛奶样品,并将其送至异地认证实验室进行牛奶成分分析。每个AMS单位还从5到10头奶牛手动收集了数据;称重完整的奶牛挤奶量,作为牛奶产量的金标准,每头奶牛挤奶收集3个牛奶样品,并在实验室进行分析,以作为牛奶成分的金标准。在CMS研究农场的6次牛奶记录场合中,使用了常规牛奶记录过程中使用的设备进行了类似的操作。农场类型,品种,季节和地区似乎并未影响用于AMS装置的设备的准确性。 AMS单位使用的奶量计分别在2至10千克的测试桶重量和> 10千克的测试桶重量中分别有12.5%和25%符合ICAR限制。对于用于CMS的设备,这些百分比分别为52%和42%。将所有样品分析为一个牛奶记录测试日,对于AMS,1.4%落在20%差异带外,而CMS的牛奶样品为1.1%。 AMS使用的设备在73%的牛奶记录测试天中符合ICAR的脂肪百分比标准,而CMS农场使用的设备中的42%的牛奶记录测试天中脂肪百分比。在一天的牛奶记录测试中分析所有牛奶样品时,有3.5%的牛奶样品超出了AMS的99%ICAR限值,而CMS的牛奶样品则为17.2%。将ICAR脂肪百分比标准应用于粗蛋白百分比和SCC,AMS上使用的设备可以准确估计粗蛋白百分比,但不能准确估计SCC。因此,关于牛奶产量和脂肪百分比,AMS装置上的设备不符合国家或ICAR标准。但是,与在常规牛奶记录过程中使用的设备相比,在AMS上使用的设备具有相似或更高的准确性。建议在AMS单元上使用的设备,如果定期校准并按照制造商的说明进行安装,则与CMS设备相比,具有相似或更高的精度。由于新西兰工业界接受来自认证提供商当前在CMS农场进行牛奶记录的设备中的数据,因此结果暗示也应允许将AMS设备用于牛奶记录。

著录项

  • 来源
    《Journal of dairy science》 |2015年第5期|3541-3557|共17页
  • 作者单位

    DairyNZ Ltd., Private Bag 3221, Hamilton 3240, New Zealand,Chair Group Business Economics, Wageningen University, Hollandseweg 1, 6706 KN, Wageningen, the Netherlands;

    DairyNZ Ltd., Private Bag 3221, Hamilton 3240, New Zealand;

    DairyNZ Ltd., Private Bag 3221, Hamilton 3240, New Zealand;

    DairyNZ Ltd., Private Bag 3221, Hamilton 3240, New Zealand;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    robotic milking; milk recording data; milk-sampling device; accuracy;

    机译:机器人挤奶;牛奶记录数据;牛奶采样装置;准确性;

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