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In this paper, a new method is demonstrated for online remote simulation of photovoltaic systems. The required communication technology for the data exchange is introduced and the methods of PV generator parameter extraction for the simulation models are analysed. The method shown for parameter extraction from the manufacturer data is especially useful for the commissioning procedure, where the measured installed power is transferred to standard test conditions using the simulation model and can then be easily compared with the design power. At a simulation accuracy of 2% using the software environment INSEL ® any problems with the PV generator can reliably be detected. Online simulation of a grid connected PV generator is then carried out during the operation of the photovoltaic plant. The visualisation includes both the monitored and the simulated online data sets, so that a very efficient fault detection scheme is available. The method is implemented and validated on several grid connected photovoltaic power plants in Germany. It is excellently suited to provide automatic and real time fault detection and significantly improve the commissioning procedure for photovoltaic plants of all sizes.
Auslegung eines Baukastensystems für einen Detektor zur optischen Fehlerprüfung von Mantelflächen
(2016)
Im Projekt der Abschlussarbeit wird an der Konstruktion eines sich automatisch zusammenbauenden Baukastensystems für einen Detektor in Anlagen zur optischen Teileprüfung gearbeitet. Der behandelte Detektoraufbau, bestehend aus Bildsensor, Objektiv und Beleuchtung, detektiert dabei Innen- und Außenmantelflächenfehler bei Serienteilen mit Außendurchmessern von 5 mm bis 80 mm und Höhen von 1 mm bis 60 mm. Der Detektor, auch allgemeiner als Sensor bezeichnet, weist im Konstruktionsprozess eine Problematik auf, welche durch die Erzeugung eines Baukastens gelöst werden soll.
We present a planar chromatographic separation method for the compounds caffeine, artemisinin, and equol, separated on high-performance thin-layer chromatography (HPTLC) silica gel plates. As solvents for separation, methyl t-butyl ether and cyclohexane (1:1, V/V) have been used for equol, cyclohexane and ethyl acetate (7:3, V/V) for artemisinin, and ethyl acetate and acetone (7:3, V/V) for caffeine. After separation, the plate was scanned with a very specific time of flight-direct analysis in real time-mass spectrometry (TOF-DART-MS) system using the (M + 1)+ signals of equol, artemisinin, and caffeine. The (M + 1) peak of artemisinin at 283.13 m/z is clearly detectable, which is the proof that DART-MS is applicable for the quantitative determination of rather instable molecules. The planar set-up of DART source, HPTLC plate and detector inlet in a line showed higher sensitivities compared to desorption at an angle. The optimal detector voltage increases with the molar mass of the analyte, thus an individual determination of optimal detector voltage setting for the different analyte is recommended to achieve the best possible measurement conditions. In conclusion, DART-MS detection in combination with an HPTLC separation allows very specific quantification of all three compounds.
Ziel dieser Studie war es, Zusammenhänge zwischen Kinematik und Kraftanforderungen an den Ringen im Gerätturnen zu ermitteln. Zu diesem Zweck wurde das Schwung- und Krafthalteelement Stemme rückwärts zum Kreuzhang gewählt und analysiert.
Die Datenerhebung erfolgte im Rahmen der Europameisterschaften 2022 in München. Für die Analyse der Kraftanforderungen wurde die vertikale Kraft in den Aufhängungen der Ringe mit eindimensionalen Kraftsensoren gemessen und für die Analyse der Kinematik ein markerloses Bewegungserfassungssystem eingesetzt.
Insgesamt wurden die Ausführungen von 17 professionellen Turnern untersucht. Für die Analyse der Kinematik wurden vier Ausführungsparameter bestimmt und deren Einfluss auf den Kraftbedarf statistisch analysiert, wobei die Kraftdaten auf das jeweilige Körpergewicht normiert wurden und das relative Kraftmaximum als Bezugspunkt für den Kraftbedarf gewählt wurde. Bei den vier Ausführungsparametern handelte es sich um die maximale Körpervorneigung während des Rückschwungs vor der Stemmbewegung des Elementes, den minimalen Arm-Rumpf-Winkel (ARW) während des Elementverlaufs, die höchste Position des Körperschwerpunktes (KSP) während des Elementverlaufs und die Distanz, um die der KSP von der höchsten Position in den Kreuzhang absinkt.
Es zeigte sich eine signifikante Korrelation zwischen der höchsten KSP-Position und dem Kraftmaximum. Für die anderen Ausführungsparameter konnten Tendenzen ermittelt werden. Darüber hinaus konnten die Korrelationen der Parameter untereinander zu zwei Ausführungsvarianten zusammengefasst werden. Dabei führt eine Ausführungsvariante zu einem größeren relativen Kraftmaximum und zu größeren Abzügen als die anderen. Die biomechanische Betrachtung dieser Ausführungsvarianten ergab jedoch, dass die Ausführungsvariante mit dem größeren mittleren Kraftmaximum dennoch leichter auszuführen ist, während die andere Ausführungsvariante in der Durchführung anspruchsvoller ist und besser bewertet wird.
In this project, different calcification methods for collagen and collagen coatings were compared in terms of their applicability for 3D printing and production of collagen-coated scaffolds. For this purpose, scaffolds were printed from polycaprolactone PCL using the EnvisionTec 3D Bioplotter and then coated with collagen. Four different coating methods were then applied: hydroxyapatite (HA) powder directly in the collagen coating, incubation in 10× SBF, coating with alkaline phosphatase (ALP), and coating with poly-L-aspartic acid. The results were compared by ESEM, µCT, TEM, and EDX. HA directly in the collagen solution resulted in a pH change and thus an increase in viscosity, leading to clumping on the scaffolds. As a function of incubation time in 10× SBF as well as in ALP, HA layer thickness increased, while no coating on the collagen layer was apparently observed with poly-L-aspartic acid. Only ultrathin sections and TEM with SuperEDX detected nano crystalline HA in the collagen layer. Exclusively the incubation in poly-L-aspartic acid led to HA crystals within the collagen coating compared to all other methods where the HA layers formed in different forms only at the collagen layer.
The identification and quantification of compounds in the gas phase becomes of increasing interest in the context of environmental protection, as well as in the analytical field. In this respect, the high extinction coefficients of vapours and gases in the ultraviolet wavelength region allow a very sensitive measurement system. In addition, the increased performance of the components necessary for setting up a measurement system, such as fibres, light sources and detectors has been improved. In particular the light sources and detectors offer improved stability, and the deep UV performance and solarisation resistance of fused silica fibres allow have been significantly optimized in the past years. Therefore a compact and reliable detection system with high measuring accuracy is developed. Within this paper possible applications of the system under development and recent results will be discussed.
Previous studies of the hyphenation of gas chromatographic separation and spectrophotometric detection in the ultraviolet wavelength range between 168 and 330 nm showed a high potential for applications where the analysis of complex samples is required. Within this paper the development of a state-of-the-art detection system for compounds in the vapour phase is described, offering an improved behaviour compared to previous systems: Dependent on the requirements of established detection systems hyphenated with gas chromatography, the main components of the system have to be designed for optimum performance and reliability of the spectrophotometric detector: A deuterium lamp as a broadband light source has been selected for improved stability in the measurements. A new-type absorption cell based on fiber-optics has been developed considering the dynamic necessary to compete with existing techniques. In addition, the influence of the volume of the cell on the chromatogram needs to be analyzed. Tests for determining the performance of the absorption cell in terms of chemical and thermal influences have been carried out. A new spectrophotometer with adequate spectral resolution in the wavelength range, offering improved stability and dynamic for an efficient use in this application was developed. Furthermore, the influence of each component on the performance, reliability and stability of the sensor system will be discussed. An overview and outlook over the potential applications in the environmental, scientific and medical field will be given.
The Timed-Up-and-Go (TUG) test aims to assess mobility, balance, walking ability, and fall risk during walking. The instrumentalization of the TUG is already described in the literature and is beginning to be implemented in the industry. The products proposed by Zhortech and Digitsole, namely connected insoles, as well as additional sensors placed on the sternum and the right and eventually left femur allow the instrumentalization of the test.
An algorithm of detection and evaluation of the TUG has been developed in two versions. The first one (V1) aiming simply to calculate the total duration of the test. A second version is an improvement of V1, allowing to segment the TUG in three sub-phases: Sit-Stand, walking, Stand-Sit. These algorithms have been declined in a variant with the five sensors mentioned, and one without the sensor of the left femur.
The performance of the algorithms was compared to manual labeling performed on video. The comparison includes a bland-Altman plot and a correlation for the total test duration, but also for the sub-phase’s duration according to the two variants.
The TUG duration shows very good results regarding the limits of agreements (lLoA = -0.33 s and uLoA+0.6 s). The bias of 0.13 s indicated that the algorithm overrates the duration of the TUG. The results of the TUG subphases are less accurate. Although the correlation coefficient is between 0.76 and 0.96 for the different subphases, the limits of agreements are still very high, between -0.71 s and -0.5 s for the lLoA and +0.39 s and +0.58 s for the uLoA. These limits of agreements indicated that the Sit-Stand and Stand-Sit transition are not accurate enough yet. The dispersion is high for a transition that could last between about one and six seconds. The two variants, with and without a sensor on the left femur, present similar results.