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开发一种用于个体牛舍挤奶系统乳头末端真空的控制系统。

Development of a control system for the teat-end vacuum in individual quarter milking systems.

机构信息

Leibniz Institute for Agricultural Engineering Potsdam-Bornim (ATB), Potsdam, Germany.

出版信息

Sensors (Basel). 2013 Jun 13;13(6):7633-51. doi: 10.3390/s130607633.

Abstract

Progress in sensor technique and electronics has led to a decrease in the costs of electronic and sensor components. In modern dairy farms, having udders in good condition, a lower frequency of udder disease and an extended service life of dairy cows will help ensure competitiveness. The objective of this study was to develop a teat-end vacuum control system with individual quarter actor reaction. Based on a review of the literature, this system is assumed to protect the teat tissue. It reduces the mean teat-end vacuum in the maximum vacuum phase (b) to a level of 20 kPa at a flow rate of 0.25 L/min per quarter. At flow rates higher than 1.50 L/min per quarter, the teat-end vacuum can be controlled to a level of 30 kPa, because in this case it is desirable to have a higher vacuum for the transportation of the milk to the receiver. With this system it is possible for the first time to supply the teat end with low vacuum at low flow rates and with higher vacuum at increasing flow rates in a continuous process with a three second reaction-rate on individual quarter level. This system is completely automated.

摘要

传感器技术和电子技术的进步降低了电子和传感器元件的成本。在现代化的奶牛场,保持良好的乳房状况、降低乳房疾病的频率和延长奶牛的使用寿命将有助于确保竞争力。本研究的目的是开发一种具有个体牛舍反应的乳头末端真空控制系统。基于文献综述,该系统被认为可以保护乳头组织。它将最大真空阶段(b)的乳头末端真空平均值降低到 20 kPa,流速为每牛舍 0.25 L/min。在流速高于每牛舍 1.50 L/min 的情况下,乳头末端真空可以控制到 30 kPa,因为在这种情况下,为了将牛奶输送到接收器,需要更高的真空。有了这个系统,第一次有可能在低流量下为乳头末端提供低真空,并在增加的流量下提供更高的真空,这是一个在个体牛舍水平上具有三秒反应速率的连续过程。该系统完全自动化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8446/3715241/019d78008259/sensors-13-07633f1.jpg

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