Abstract:
Although there are many methods and procedures for analyzing complex circuits, probably the best-known general approach is to apply an organized, systematic procedure to ...Show MoreMetadata
Abstract:
Although there are many methods and procedures for analyzing complex circuits, probably the best-known general approach is to apply an organized, systematic procedure to the combination of the analytic expressions for the voltage-current characteristics of the individual circuit elements. To be able to apply this method of attack, it is essential that the characteristics of the individual circuit elements, if such elements can be defined, can be represented by analytic expressions, and that an organized method exists where the analytic representations of the individual circuit elements can be combined to yield the desired result.
Published in: Transactions of the American Institute of Electrical Engineers, Part I: Communication and Electronics ( Volume: 78, Issue: 5, November 1959)
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Current Flow ,
- Voltage Waveforms ,
- Steady-state Operation ,
- Analytical Representation ,
- Matrix Elements ,
- Transformation Matrix ,
- Quiescent State ,
- Elements ,
- Matrix Inequalities ,
- Laplace Transform ,
- Operation Period ,
- Submatrix ,
- Control Period ,
- Subintervals ,
- Short-circuit Current ,
- Supply Voltage ,
- Half Of Period ,
- Scattering Matrix ,
- Average Current ,
- Foregoing Analysis ,
- Admittance Matrix ,
- Inductor Voltage ,
- Instantaneous Voltage ,
- Shift Period ,
- Amount Of Variance ,
- Matrix Multiplication ,
- Steady-state Characteristics ,
- Variable Transformation ,
- Position Time ,
- Wave Voltage
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Current Flow ,
- Voltage Waveforms ,
- Steady-state Operation ,
- Analytical Representation ,
- Matrix Elements ,
- Transformation Matrix ,
- Quiescent State ,
- Elements ,
- Matrix Inequalities ,
- Laplace Transform ,
- Operation Period ,
- Submatrix ,
- Control Period ,
- Subintervals ,
- Short-circuit Current ,
- Supply Voltage ,
- Half Of Period ,
- Scattering Matrix ,
- Average Current ,
- Foregoing Analysis ,
- Admittance Matrix ,
- Inductor Voltage ,
- Instantaneous Voltage ,
- Shift Period ,
- Amount Of Variance ,
- Matrix Multiplication ,
- Steady-state Characteristics ,
- Variable Transformation ,
- Position Time ,
- Wave Voltage