tarafından yazıldı: Fernando Parillo
PC için uyumlu APK
Indir Android App | Geliştirici | Puan | Uyumluluk |
---|---|---|---|
PC için APK'yi indirin | Fernando Parillo | 0 | 2.2.1 |
Şu anda, DC Motor Simulator bilgisayardan indirilemez. Ancak, PC'de Android uygulamalarını çalıştırmak için öykünücüleri kullanabilirsiniz. Aşağıdaki 3 Basit adımda, size DC Motor Simulator'ı PC'de nasıl kullanacağınızı göstereceğiz:
DC Motor Simulator için Apple Appstore istatistikleri
Geliştirici | Puanlama | Puan | Geçerli versiyon | Yetişkin Sıralaması | |
---|---|---|---|---|---|
₺8,99 iTunes"da | Fernando Parillo | 0 | 0.00 | 2.2.1 | 4+ |
1. Also in this case the electrical and/or mechanical quantities are plotted, in particular during the transient analysis it is possible to change the Load torque applied to the motor shaft.
2. In order to perform a more accurate transient analysis it is possible to vary, during the simulation, the following electrical quantities: armature voltage, and excitation winding voltage respectively.
3. In the Pro version of the app it is possible to see also numerical values of the graphed quantities, by touching the bottom left area of the graph window, when the simulation is in pause state.
4. The numerical solver is based on ad hoc implemented Runge Kutta method, that in this case it solves a 2nd order differential equation system: the first equation is related to the armature winding, and the second one represents the mechanical equilibrium: “d’Alembert” equation.
5. In particular are analyzed the transient of the Armature current and the Electromagnetic torque and Motor Shaft speed in function of the time.
6. In this version of the app is possible to see also numerical values of the graphed quantities, by touching the bottom left area of the graph window.
7. In the first tab is possible to store all the requested data of several DC motors, by selecting one of several stored motors is possible to examine the behavior either in steady state and transient conditions.
8. The electrical and/or mechanical quantities are plotted, by touching the screen it is possible to see the values of the graphed quantities.
9. In particular are shown the Motor Shaft speed [rad/s] and the Armature current [A] in function of the Electromagnetic torque.
10. Furthermore it is possible to study transient phenomena also varying the armature resistance, by adding an external power resistor in series with the armature circuit.
11. In particular to perform the transient analysis, a complex Runge Kutta solver has been implemented.
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