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ANSYS inc electromagnetic simulators hfss and cst software
Flow chart of our antenna optimized by particle swarm optimization (PSO) method. <t>HFSS:</t> High Frequency Structure Simulator Software. MATLAB: matrix laboratory, proprietary multi-paradigm programming language and numerical computing environment developed by MathWorks.
Electromagnetic Simulators Hfss And Cst Software, supplied by ANSYS inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Flow chart of our antenna optimized by particle swarm optimization (PSO) method. HFSS: High Frequency Structure Simulator Software. MATLAB: matrix laboratory, proprietary multi-paradigm programming language and numerical computing environment developed by MathWorks.

Journal: International Journal of Environmental Research and Public Health

Article Title: Optimization of UHF RFID Five-Slotted Patch Tag Design Using PSO Algorithm for Biomedical Sensing Systems

doi: 10.3390/ijerph17228593

Figure Lengend Snippet: Flow chart of our antenna optimized by particle swarm optimization (PSO) method. HFSS: High Frequency Structure Simulator Software. MATLAB: matrix laboratory, proprietary multi-paradigm programming language and numerical computing environment developed by MathWorks.

Article Snippet: All simulations performed in this work are via the electromagnetic simulators HFSS and CST software (Ansys, Inc. Canonsburg, Pennsylvania, PA, USA) [ , ].

Techniques: Software

( a ) Reflection coefficient S11 and ( b ) antenna input impedance versus frequency of PSO-optimized placed on human arm in HFSS and CST solvers.

Journal: International Journal of Environmental Research and Public Health

Article Title: Optimization of UHF RFID Five-Slotted Patch Tag Design Using PSO Algorithm for Biomedical Sensing Systems

doi: 10.3390/ijerph17228593

Figure Lengend Snippet: ( a ) Reflection coefficient S11 and ( b ) antenna input impedance versus frequency of PSO-optimized placed on human arm in HFSS and CST solvers.

Article Snippet: All simulations performed in this work are via the electromagnetic simulators HFSS and CST software (Ansys, Inc. Canonsburg, Pennsylvania, PA, USA) [ , ].

Techniques:

Gain versus frequency of PSO-optimized placed on human arm in HFSS and CST solvers.

Journal: International Journal of Environmental Research and Public Health

Article Title: Optimization of UHF RFID Five-Slotted Patch Tag Design Using PSO Algorithm for Biomedical Sensing Systems

doi: 10.3390/ijerph17228593

Figure Lengend Snippet: Gain versus frequency of PSO-optimized placed on human arm in HFSS and CST solvers.

Article Snippet: All simulations performed in this work are via the electromagnetic simulators HFSS and CST software (Ansys, Inc. Canonsburg, Pennsylvania, PA, USA) [ , ].

Techniques:

( a ) Reflection coefficient S11 and ( b ) Gain versus frequency of proposed RFID tag placed on some human body regions (arm, chest, and wrist) in HFSS and CST solvers.

Journal: International Journal of Environmental Research and Public Health

Article Title: Optimization of UHF RFID Five-Slotted Patch Tag Design Using PSO Algorithm for Biomedical Sensing Systems

doi: 10.3390/ijerph17228593

Figure Lengend Snippet: ( a ) Reflection coefficient S11 and ( b ) Gain versus frequency of proposed RFID tag placed on some human body regions (arm, chest, and wrist) in HFSS and CST solvers.

Article Snippet: All simulations performed in this work are via the electromagnetic simulators HFSS and CST software (Ansys, Inc. Canonsburg, Pennsylvania, PA, USA) [ , ].

Techniques: