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Topology (electrical circuits)

About: Topology (electrical circuits) is a research topic. Over the lifetime, 33316 publications have been published within this topic receiving 397651 citations. The topic is also known as: topology.


Papers
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Patent
21 Oct 2015
TL;DR: In this article, a system for receiving topology information from a plurality of waveguide systems or other transmission devices is described, where the topology is used to identify one or more transmission media available to each waveguide system for transmitting or receiving electromagnetic waves.
Abstract: Aspects of the subject disclosure may include, for example, a system for receiving topology information from a plurality of waveguide systems or other transmission devices, the topology information identifying one or more transmission media available to each waveguide system for transmitting or receiving electromagnetic waves, and updating a topology of a communication system from the topology information provided by the plurality of waveguide systems. Other embodiments are disclosed.

148 citations

Patent
02 Dec 1999
TL;DR: In this paper, a monitoring system for determining topology features of a network includes methods for creating a topology map of the network by: obtaining a list of managed network devices; identifying trunk ports, link channel ports, and trunk channel ports; identifying link port (2) and node ports; determining connections between the ports (1-8); storing the collected information; and displaying the network topology.
Abstract: A monitoring system (switches A and B) for determining topology features of a network includes methods for creating a topology map of the network by: obtaining a list of managed network devices; identifying trunk ports, link channel ports, and trunk channel ports; identifying link port (2) and node ports; determining connections between the ports (1-8); storing the collected information; and displaying the network topology. The system also includes methods for obtaining information regarding the devices and machines connected to the network, including VLAN (a-h) and backplane information, router ARP table information, device interface information, and physical address information. Also, ports and/or devices are logically grouped for in order to provide more accurate topology information.

148 citations

Journal ArticleDOI
TL;DR: In this article, a new quadrature voltage-controlled oscillator (QVCO) topology is proposed where the back-gates of the core transistors are used as coupling terminals.
Abstract: A new quadrature voltage-controlled oscillator (QVCO) topology is proposed where the back-gates of the core transistors are used as coupling terminals. The use of back-gates reduces the power dissipation and removes the additional noise contributions compare to the conventional coupling transistor based topology. The advantages of the proposed QVCO topology in comparison with prior works are exploited based on simulation. A QVCO based on the proposed topology with additional design ideas has been implemented using a 0.18-/spl mu/m triple-well technology for 1 GHz-band operation, and measurement shows the phase noise of -120 dBc/Hz at 1-MHz offset with output power of 2.5 dBm, while dissipating only 3 mA for the whole QVCO from 1.8-V supply.

148 citations

Journal ArticleDOI
TL;DR: This paper proposes a new topology for an enhanced-boost Z-source inverter (ZSI) with combined two Z-impedance networks, which uses shorter shoot-through duration and a larger modulation index to improve the output waveform quality.
Abstract: This paper proposes a new topology for an enhanced-boost Z-source inverter (ZSI) with combined two Z-impedance networks. By two Z-impedance networks and low shoot-through duty cycle, the proposed inverter produces high output voltage gain. In traditional ZSIs for high boosting voltage, a low modulation index is required; hence, under these conditions, the output voltage will have low quality with high total harmonic distortion. Compared with the conventional high-boost ZSI topologies, the proposed inverter uses shorter shoot-through duration and a larger modulation index to improve the output waveform quality. Comparison between the proposed topology and previously proposed schemes, in terms of inductor numbers, voltage and current stresses on elements, sizes of inductors and capacitors, efficiency, and switching device product (SDP) factors of diodes, is made, and the results verify the priority of the proposed topology. The operating principle of the proposed topology is analyzed in detail. Both simulation and experimental results verify the high performance of the proposed inverter.

148 citations

Journal ArticleDOI
TL;DR: In this article, a three-phase hybrid cascaded modular multilevel inverter topology is derived from the proposed modified H-bridge module, which enables the tranformerless operation and enhances the power quality.
Abstract: This paper presents a three-phase hybrid cascaded modular multilevel inverter topology which is derived from the proposed modified H-bridge module. This topology results in the reduction of number of power switches, losses, installation area, voltage stress and converter cost. For renewable energy environment such as photovoltaic (PV) connected to the microgrid system, it enables the tranformerless operation and enhances the power quality. This multilevel inverter is an effective and efficient power electronic interface strategy for renewable energy systems. The basic operation of single module and the proposed cascaded hybrid topology is explained. The ability to operate in both symmetrical and asymmetrical modes is analyzed. The comparative analysis is done with classical cascaded H-bridge and flying capacitor multilevel inverters. The nearest level control method is employed to generate the gating signals for the power semiconductor switches. To verify the applicability and performance of the proposed structure in PV renewable energy environment, simulation results are carried out by MATLAB/Simulink under both steady-state and dynamic conditions. Experimental results are presented to validate the simulation results.

148 citations


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Performance
Metrics
No. of papers in the topic in previous years
YearPapers
20241
20233,701
20227,927
20212,733
20202,663
20192,742