Abstract:
A system for observing and predicting a physiological state of an animal has been provided. The system includes a computer including a processor and being operatively connected to a database, at least one sample providing device for repetitively providing at least one sample of a body fluid of the animal, an analysis apparatus for analyzing the at least one sample, so as to obtain at least one sample value of at least one parameter of the body fluid, a data interface for repetitively entering the sample value of the at least one parameter in the database, where the database is adapted to store multiple database entries representing the sample value of the at least one parameter at various points in time, and where the processor is programmed to: perform at least one mathematical analysis of the at least one sample value, and selecting, on the basis of the at least one mathematical analysis, the point in time for providing a subsequent sample and performing a subsequent analysis of the subsequent sample for at least one of the parameters.
Abstract:
A system for observing and predicting a physiological state of an animal has been provided. The system includes a computer including a processor and being operatively connected to a database, at least one sample providing device for repetitively providing at least one sample of a body fluid of the animal, an analysis apparatus for analysing the at least one sample, so as to obtain at least one sample value of at least one parameter of the body fluid, a data interface for repetitively entering the sample value of the at least one parameter in the database, where the database is adapted to store multiple database entries representing the sample value of the at least one parameter at various points in time, and where the processor is programmed to perform at least one mathematical analysis of the at least one sample value, and selecting, on the basis of the at least one mathematical analysis, the point in time for providing a subsequent sample and performing a subsequent analysis of the subsequent sample for at least one of the parameters.
Abstract:
A system for observing and predicting a physiological state of an animal has been provided. The system includes a computer including a processor and being operatively connected to a database, at least one sample providing device for repetitively providing at least one sample of a body fluid of the animal, an analysis apparatus for analyzing the at least one sample, so as to obtain at least one sample value of at least one parameter of the body fluid, a data interface for repetitively entering the sample value of the at least one parameter in the database, where the database is adapted to store multiple database entries representing the sample value of the at least one parameter at various points in time, and where the processor is programmed to: perform at least one mathematical analysis of the at least one sample value, and selecting, on the basis of the at least one mathematical analysis, the point in time for providing a subsequent sample and performing a subsequent analysis of the subsequent sample for at least one of the parameters.
Abstract:
The present invention relates to a method of controlling the aerodynamic load of a wind turbine's blades individually in such a way that the dynamic aerodynamic loads on the turbine are reduced and power production is optimised. In general the present invention will improve the overall stability of the turbine leading to reduce fatigue loads, reduced extreme loads during operation and reduced risk of blade-tower interaction. In particular preferred embodiment of the invention, flow properties are measured locally on the different blades or in front of the blades and from these measurements the pitch angle settings are changed, in other ways changing the aerodynamic properties, for the blades through a control unit.