Войдите в систему

Consider an angioplasty system featuring a catheter equipped with a turbine, a critical tool for removing plaque deposits from coronary arteries. This intricate medical device operates using a circuit model reminiscent of a dual-node RLC circuit powered by a current-controlled voltage source.

To unravel the complexities of this system, nodal analysis is employed, a powerful technique founded on Kirchhoff's current law (KCL), which remains valid for phasors. AC circuits can effectively be analyzed using nodal analysis.

The process begins with gathering information about the input source voltage, inductance, and capacitance values. These data points can calculate the driving voltage for the catheter's shaft. Leveraging angular frequency, inductance, and capacitance values, the impedance across the inductor and capacitor is determined, mapping out a frequency domain circuit.

Equation1

Equation2

KCL and Ohm's law are applied at both nodes, yielding equations that describe the system's behavior. When simplified and integrated, these equations reveal that the shaft voltage precisely equals the source voltage.

This comprehensive analysis provides essential insights into the electrical operation of the angioplasty system. The voltage data can then be converted into the time domain, allowing for assessing and optimizing the system's performance for effective plaque removal in medical procedures.

Теги
Angioplasty SystemCatheterTurbinePlaque RemovalCoronary ArteriesDual node RLC CircuitCurrent controlled Voltage SourceNodal AnalysisKirchhoff s Current LawAC CircuitsImpedanceAngular FrequencyInductanceCapacitanceShaft VoltageTime DomainElectrical Operation

Из главы 6:

article

Now Playing

6.9 : Node Analysis for AC Circuits

AC Circuit Analysis

236 Просмотры

article

6.1 : Sinusoidal Sources

AC Circuit Analysis

335 Просмотры

article

6.2 : Graphical and Analytic Representation of Sinusoids

AC Circuit Analysis

332 Просмотры

article

6.3 : Phasors

AC Circuit Analysis

407 Просмотры

article

6.4 : Phasor Arithmetics

AC Circuit Analysis

183 Просмотры

article

6.5 : Phasor Relationships for Circuit Elements

AC Circuit Analysis

401 Просмотры

article

6.6 : Kirchoff's Laws using Phasors

AC Circuit Analysis

317 Просмотры

article

6.7 : Impedances and Admittance

AC Circuit Analysis

488 Просмотры

article

6.8 : Impedance Combination

AC Circuit Analysis

256 Просмотры

article

6.10 : Mesh Analysis for AC Circuits

AC Circuit Analysis

294 Просмотры

article

6.11 : Source Transformation for AC Circuits

AC Circuit Analysis

418 Просмотры

article

6.12 : Thévenin Equivalent Circuits

AC Circuit Analysis

131 Просмотры

article

6.13 : Norton Equivalent Circuits

AC Circuit Analysis

271 Просмотры

article

6.14 : Superposition Theorem for AC Circuits

AC Circuit Analysis

517 Просмотры

article

6.15 : Op Amp AC Circuits

AC Circuit Analysis

128 Просмотры

See More

JoVE Logo

Исследования

Образование

О JoVE

Авторские права © 2025 MyJoVE Corporation. Все права защищены