首页> 外文会议>Engineering in Medicine and Biology Society, 1997. Proceedings of the 19th Annual International Conference of the IEEE >Use of Global Positioning Systems (GPS) in data acquisition for equine exercise physiology
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Use of Global Positioning Systems (GPS) in data acquisition for equine exercise physiology

机译:使用全球定位系统(GPS)进行马运动生理数据采集

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Studies of physiological responses to exercise in the horse frequently describe the relationships between measured variables, such as heart rate and oxygen consumption measured against velocity of the animal. Treadmill laboratory facilities allow accurate control and measurement of the velocity of exercise. However, studies made on the track or in the field more accurately describe the true physiological and metabolic demands of exercise. This is because field studies account for factors such as rider weight, gait differences, ground surface differences and acceleration. For field studies to be effective, an accurate technique of recording horse velocity unimpeded by bulky equipment is required. This paper discusses the use of an animal mounted GPS receiver. GPS derived time stepped velocity and altitude change can give a true measure of work output. When simultaneously recorded with other ambulatory physiological instrumentation, the GPS forms the core of a versatile data logging solution. Presented is an overview of the NAVSTAR Global Positioning System, discussing factors affecting resolution, accuracy and use of Differential mode GPS (DGPS), with a view to optimising physiological measurements. Interfacing to a data logger is discussed, together with applications of GPS synchronised time marks.
机译:对马匹运动的生理反应的研究经常描述测得的变量之间的关系,例如心率和相对于动物的速度测得的耗氧量。跑步机实验室设施可精确控制和测量运动速度。但是,在田间或田间进行的研究更准确地描述了运动的真正生理和代谢需求。这是因为现场研究考虑了诸如骑车者体重,步态差异,地面差异和加速度等因素。为了使田间研究有效,需要一种准确的技术来记录不受大型设备干扰的马速。本文讨论了安装在动物身上的GPS接收器的使用。 GPS导出的时间步速和高度变化可以真实地测量工作输出。当与其他非卧床生理仪器同时记录时,GPS构成了多功能数据记录解决方案的核心。报告概述了NAVSTAR全球定位系统,讨论了影响分辨率,精度和差模GPS(DGPS)使用的因素,以优化生理测量。讨论了与数据记录器的接口,以及GPS同步时间标记的应用。

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