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Increasing the revenues from automatic milking by using individual variation in milking characteristics

机译:通过使用单独的挤奶特性变化来增加自动挤奶的收益

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摘要

The objective of this study was to quantify individual variation in daily milk yield and milking duration in response to the length of the milking interval and to assess the economic potential of using this individual variation to optimize the use of an automated milking system. Random coefficient models were used to describe the individual effects of milking interval on daily milk yield and milking duration. The random coefficient models were fitted on a data set consisting of 4,915 records of normal uninterrupted milkings collected from 311 cows kept in 5 separate herds for 1 wk. The estimated random parameters showed considerable variation between individuals within herds in milk yield and milking duration in response to milking interval. In the actual situation, the herd consisted of 60 cows and the automatic milking system operated at an occupation rate (OR) of 64%. When maximizing daily milk revenues per automated milking system by optimizing individual milking intervals, the average milking interval was reduced from 0.421 d to 0.400 d, the daily milk yield at the herd level was increased from 1,883 to 1,909 kg/d, and milk revenues increased from €498 to €507/d. If an OR of 85% could be reached with the same herd size, the optimal milking interval would decrease to 0.238 d, milk yield would increase to 1,997 kg/d, and milk revenues would increase to €529/d. Consequently, more labor would be required for fetching the cows, and milking duration would increase. Alternatively, an OR of 85% could be achieved by increasing the herd size from 60 to 80 cows without decreasing the milking interval. Milk yield would then increase to 2,535 kg/d and milk revenues would increase to €673/d. For practical implementation on farms, a dynamic approach is recommended, by which the parameter estimates regarding the effect of interval length on milk yield and the effect of milk yield on milking duration are updated regularly and also the milk production response to concentrate intake is taken into account.
机译:这项研究的目的是对挤奶间隔时间的长短量化每日泌乳量和挤奶持续时间的个体差异,并评估利用这种个体差异来优化自动化挤奶系统的经济潜力。随机系数模型用于描述挤奶间隔对每日产奶量和挤奶持续时间的个体影响。将随机系数模型拟合到一个数据集上,该数据集由从5个单独的牛群饲养1周的311头母牛收集的4,915条正常不间断挤奶记录组成。估计的随机参数显示,响应挤奶间隔,奶牛群中个体之间的产奶量和挤奶持续时间存在很大差异。在实际情况中,牛群由60头奶牛组成,并且自动挤奶系统的使用率为64%。通过优化单个挤奶间隔使每个自动挤奶系统的每日牛奶收入最大化时,平均挤奶间隔从0.421 d减少到0.400 d,牧群水平的每日牛奶产量从1,883公斤/天增加,牛奶收入增加从498欧元到507欧元/天。如果在相同的牛群大小下达到OR的85%,则最佳挤奶间隔将减少至0.238 d,牛奶产量将增加至1,997 kg / d,牛奶收入将增加至529 / d。因此,将需要更多的劳力来取奶,并且挤奶时间将增加。或者,通过将牛群的大小从60头增加到80头而不减少挤奶间隔,可以达到85%的OR。然后,牛奶产量将增加到2,535公斤/天,牛奶收入将增加到673欧元/天。为了在农场上实际实施,建议采用动态方法,通过该方法定期更新有关间隔长度对产奶量的影响以及产奶量对挤奶持续时间的影响的参数估计值,并将对浓缩物摄入的产奶反应纳入考虑帐户。

著录项

  • 来源
    《Journal of dairy science》 |2010年第3期|p.942-953|共12页
  • 作者单位

    Animal Sciences Group, Wageningen University and Research Centre, PO Box 65, 8200 AB Lelystad, the Netherlands;

    Business Economics Group, Wageningen University and Research Centre, PO Box 8130, 6700 EW Wageningen, the Netherlands;

    Biometris, Wageningen University and Research Centre, PO Box 100, 6700 AC Wageningen, the Netherlands;

    Animal Sciences Group, Wageningen University and Research Centre, PO Box 65, 8200 AB Lelystad, the Netherlands;

    Business Economics Group, Wageningen University and Research Centre, PO Box 8130, 6700 EW Wageningen, the Netherlands;

  • 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

    economic evaluation; milking duration; milking interval; random coefficient model;

    机译:经济评估;挤奶时间挤奶间隔随机系数模型;
  • 入库时间 2022-08-17 23:24:46

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