G.B. Kliman

5.1k total citations · 2 hit papers
50 papers, 4.1k citations indexed

About

G.B. Kliman is a scholar working on Electrical and Electronic Engineering, Control and Systems Engineering and Mechanical Engineering. According to data from OpenAlex, G.B. Kliman has authored 50 papers receiving a total of 4.1k indexed citations (citations by other indexed papers that have themselves been cited), including 32 papers in Electrical and Electronic Engineering, 29 papers in Control and Systems Engineering and 25 papers in Mechanical Engineering. Recurrent topics in G.B. Kliman's work include Machine Fault Diagnosis Techniques (22 papers), Electric Motor Design and Analysis (21 papers) and Non-Destructive Testing Techniques (16 papers). G.B. Kliman is often cited by papers focused on Machine Fault Diagnosis Techniques (22 papers), Electric Motor Design and Analysis (21 papers) and Non-Destructive Testing Techniques (16 papers). G.B. Kliman collaborates with scholars based in United States, South Korea and Israel. G.B. Kliman's co-authors include Thomas Neumann, Thomas M. Jahns, J. Stein, Mohamed Benbouzid, R.A. Koegl, T.G. Habetler, Sang Bin Lee, R. D. Endicott, William Premerlani and A. Bellini and has published in prestigious journals such as IEEE Transactions on Industry Applications, IEEE Transactions on Energy Conversion and SAE technical papers on CD-ROM/SAE technical paper series.

In The Last Decade

G.B. Kliman

47 papers receiving 3.8k citations

Hit Papers

Interior Permanent-Magnet Synchronous Motors for Adjustab... 1986 2026 1999 2012 1986 1988 250 500 750

Peers — A (Enhanced Table)

Peers by citation overlap · career bar shows stage (early→late) cites · hero ref

Name h Career Trend Papers Cites
G.B. Kliman United States 23 3.2k 2.2k 1.7k 669 515 50 4.1k
G. Franceschini Italy 34 3.7k 1.2× 3.4k 1.5× 1.6k 1.0× 780 1.2× 555 1.1× 165 5.4k
F. Filippetti Italy 31 4.9k 1.5× 2.1k 0.9× 2.6k 1.5× 579 0.9× 993 1.9× 117 5.5k
M. Riera‐Guasp Spain 30 3.8k 1.2× 1.2k 0.5× 2.2k 1.3× 386 0.6× 884 1.7× 101 4.2k
Elias G. Strangas United States 32 2.4k 0.8× 2.6k 1.2× 1.2k 0.7× 624 0.9× 397 0.8× 133 4.2k
Javier Rosero García Colombia 22 1.9k 0.6× 1.4k 0.6× 860 0.5× 456 0.7× 302 0.6× 97 2.7k
C. Tassoni Italy 24 3.8k 1.2× 1.6k 0.7× 2.1k 1.2× 424 0.6× 818 1.6× 72 4.4k
Pinjia Zhang China 28 1.9k 0.6× 2.2k 1.0× 1.1k 0.6× 381 0.6× 286 0.6× 182 3.4k
Bilal Akin United States 43 2.3k 0.7× 4.0k 1.8× 992 0.6× 573 0.9× 259 0.5× 212 5.2k
A.H. Bonnett United States 19 1.2k 0.4× 1.2k 0.5× 760 0.4× 284 0.4× 249 0.5× 64 2.0k
Peter Vas United Kingdom 20 3.3k 1.0× 4.5k 2.0× 1.1k 0.6× 430 0.6× 303 0.6× 63 5.7k

Countries citing papers authored by G.B. Kliman

Since Specialization
Citations

This map shows the geographic impact of G.B. Kliman's research. It shows the number of citations coming from papers published by authors working in each country. You can also color the map by specialization and compare the number of citations received by G.B. Kliman with the expected number of citations based on a country's size and research output (numbers larger than one mean the country cites G.B. Kliman more than expected).

Fields of papers citing papers by G.B. Kliman

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

This network shows the impact of papers produced by G.B. Kliman. Nodes represent research fields, and links connect fields that are likely to share authors. Colored nodes show fields that tend to cite the papers produced by G.B. Kliman. The network helps show where G.B. Kliman may publish in the future.

Co-authorship network of co-authors of G.B. Kliman

This figure shows the co-authorship network connecting the top 25 collaborators of G.B. Kliman. A scholar is included among the top collaborators of G.B. Kliman based on the total number of citations received by their joint publications. Widths of edges represent the number of papers authors have co-authored together. Node borders signify the number of papers an author published with G.B. Kliman. G.B. Kliman is excluded from the visualization to improve readability, since they are connected to all nodes in the network.

All Works

20 of 20 papers shown
1.
Tallam, Rangarajan M., Sang Bin Lee, G.C. Stone, et al.. (2007). A Survey of Methods for Detection of Stator-Related Faults in Induction Machines. IEEE Transactions on Industry Applications. 43(4). 920–933. 240 indexed citations
2.
Lee, Sang Bin, et al.. (2005). An Advanced Technique for Detecting Inter-Laminar Stator Core Faults in Large Electric Machines. IEEE Transactions on Industry Applications. 41(5). 1185–1193. 28 indexed citations
4.
Kliman, G.B., et al.. (2004). A new method for synchronous generator core quality evaluation. 2003 IEEE Power Engineering Society General Meeting (IEEE Cat. No.03CH37491). 1888–1893.
5.
Kliman, G.B., et al.. (2004). A New Method for Synchronous Generator Core Quality Evaluation. IEEE Transactions on Energy Conversion. 19(3). 576–582. 25 indexed citations
6.
Qu, Ronghai, et al.. (2004). Split-phase claw-pole induction machines with soft magnetic composite cores. Conference Record of the 2004 IEEE Industry Applications Conference, 2004. 39th IAS Annual Meeting.. 4. 2514–2519. 12 indexed citations
7.
Benbouzid, Mohamed & G.B. Kliman. (2003). What stator current processing-based technique to use for induction motor rotor faults diagnosis?. IEEE Transactions on Energy Conversion. 18(2). 238–244. 381 indexed citations
8.
Kliman, G.B., et al.. (2002). A new approach to on-line turn fault detection in AC motors. 1. 687–693. 245 indexed citations
9.
Benbouzid, Mohamed & G.B. Kliman. (2002). What Stator Current Processing Based Technique to Use for Induction Motor Rotor Faults Diagnosis. IEEE Power Engineering Review. 22(8). 62–62. 11 indexed citations
10.
Kliman, G.B., et al.. (2002). Sensorless approach to on-line motor diagnostics. 67. 135–140. 3 indexed citations
11.
Kliman, G.B., et al.. (2002). An adaptive, on-line, statistical method for bearing fault detection using stator current. 1. 213–220. 24 indexed citations
12.
Kliman, G.B., et al.. (2002). A low cost inchworm actuator for very high force. 3. 1975–1977.
13.
Kliman, G.B., et al.. (2000). Novel high-speed induction motor for a commercial centrifugal compressor. IEEE Transactions on Industry Applications. 36(3). 706–713. 104 indexed citations
14.
Habetler, T.G., et al.. (1998). Insulation failure prediction in AC machines using line-neutral voltages. IEEE Transactions on Industry Applications. 34(6). 1234–1239. 128 indexed citations
15.
Kliman, G.B., et al.. (1997). Sensorless, online motor diagnostics. IEEE Computer Applications in Power. 10(2). 39–43. 71 indexed citations
16.
Kliman, G.B.. (1992). Diamond-Coated Laminations for High-Performance Motors. Electric Machines & Power Systems. 20(5). 455–462. 2 indexed citations
17.
Kliman, G.B., et al.. (1988). Noninvasive detection of broken rotor bars in operating induction motors. IEEE Transactions on Energy Conversion. 3(4). 873–879. 427 indexed citations breakdown →
18.
Jahns, Thomas M., G.B. Kliman, & Thomas Neumann. (1986). Interior Permanent-Magnet Synchronous Motors for Adjustable-Speed Drives. IEEE Transactions on Industry Applications. IA-22(4). 738–747. 763 indexed citations breakdown →
19.
Kliman, G.B.. (1982). Advanced AC permanent magnet axial flux disc motor for electric passenger vehicle. NASA STI Repository (National Aeronautics and Space Administration). 1 indexed citations
20.
Kliman, G.B. & Allan B. Plunkett. (1979). Development of a Modulation Strategy for a PWM Inverter Drive. IEEE Transactions on Industry Applications. IA-15(1). 72–79. 45 indexed citations

Rankless uses publication and citation data sourced from OpenAlex, an open and comprehensive bibliographic database. While OpenAlex provides broad and valuable coverage of the global research landscape, it—like all bibliographic datasets—has inherent limitations. These include incomplete records, variations in author disambiguation, differences in journal indexing, and delays in data updates. As a result, some metrics and network relationships displayed in Rankless may not fully capture the entirety of a scholar's output or impact.

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