DEVELOPMENT OF A COMPLEMENTARY SPLIT RING RESONATOR ANTENNA: Investigation and application of the metamaterial shape

 
9783844328325: DEVELOPMENT OF A COMPLEMENTARY SPLIT RING RESONATOR ANTENNA: Investigation and application of the metamaterial shape
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The influences of Complementary Circular Split Ring Resonators (CCSRR) and air gap with accompanying circular microstrip patch are investigated for future wireless communication antenna. It is designed to operate from 5.850 GHz to 7.075 GHz spectrum band using microwave laminate RT/D 5880 (εr = 2.2 and thickness of 1.82 mm). The antenna structure was organized into three separate layers consisting of circular copper sheet as the ground plane (layer number one), an undersized main radiator, where the signal and energy gathered and stored, focuses and passes through to resonate its above layer (layer number two) and the slotted split ring resonators on the layer number three laminate. All layers are separated by an air gap, the positioning of coaxial feed with a small circular copper patch, the number and width of the split ring resonators corresponding to each individual circular patch are varied and analyzed as the key parametric studies. The results of the return losses, VSWR, realized gain and farfield radiation pattern either in 2D, 3D or polar plot views obtained are compared and analyzed.

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Muhammad Ezanuddin Abdul Aziz received his B.E degree in Communication Engineering from the Universiti Malaysia Perlis (UniMAP) in 2008 and is currently a MSc student in the Embedded Computing Cluster, School of Computer and Communication Engineering, Universiti Malaysia Perlis (UniMAP), Malaysia.

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Book Description Condition: New. Publisher/Verlag: LAP Lambert Academic Publishing | Investigation and application of the metamaterial shape | The influences of Complementary Circular Split Ring Resonators (CCSRR) and air gap with accompanying circular microstrip patch are investigated for future wireless communication antenna. It is designed to operate from 5.850 GHz to 7.075 GHz spectrum band using microwave laminate RT/D 5880 ( r = 2.2 and thickness of 1.82 mm). The antenna structure was organized into three separate layers consisting of circular copper sheet as the ground plane (layer number one), an undersized main radiator, where the signal and energy gathered and stored, focuses and passes through to resonate its above layer (layer number two) and the slotted split ring resonators on the layer number three laminate. All layers are separated by an air gap, the positioning of coaxial feed with a small circular copper patch, the number and width of the split ring resonators corresponding to each individual circular patch are varied and analyzed as the key parametric studies. The results of the return losses, VSWR, realized gain and farfield radiation pattern either in 2D, 3D or polar plot views obtained are compared and analyzed. | Format: Paperback | Language/Sprache: english | 144 pp. Seller Inventory # K9783844328325

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Book Description LAP Lambert Acad. Publ. Mai 2011, 2011. Taschenbuch. Condition: Neu. Neuware - The influences of Complementary Circular Split Ring Resonators (CCSRR) and air gap with accompanying circular microstrip patch are investigated for future wireless communication antenna. It is designed to operate from 5.850 GHz to 7.075 GHz spectrum band using microwave laminate RT/D 5880 ( r = 2.2 and thickness of 1.82 mm). The antenna structure was organized into three separate layers consisting of circular copper sheet as the ground plane (layer number one), an undersized main radiator, where the signal and energy gathered and stored, focuses and passes through to resonate its above layer (layer number two) and the slotted split ring resonators on the layer number three laminate. All layers are separated by an air gap, the positioning of coaxial feed with a small circular copper patch, the number and width of the split ring resonators corresponding to each individual circular patch are varied and analyzed as the key parametric studies. The results of the return losses, VSWR, realized gain and farfield radiation pattern either in 2D, 3D or polar plot views obtained are compared and analyzed. 144 pp. Englisch. Seller Inventory # 9783844328325

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Book Description LAP Lambert Acad. Publ. Mai 2011, 2011. Taschenbuch. Condition: Neu. Neuware - The influences of Complementary Circular Split Ring Resonators (CCSRR) and air gap with accompanying circular microstrip patch are investigated for future wireless communication antenna. It is designed to operate from 5.850 GHz to 7.075 GHz spectrum band using microwave laminate RT/D 5880 ( r = 2.2 and thickness of 1.82 mm). The antenna structure was organized into three separate layers consisting of circular copper sheet as the ground plane (layer number one), an undersized main radiator, where the signal and energy gathered and stored, focuses and passes through to resonate its above layer (layer number two) and the slotted split ring resonators on the layer number three laminate. All layers are separated by an air gap, the positioning of coaxial feed with a small circular copper patch, the number and width of the split ring resonators corresponding to each individual circular patch are varied and analyzed as the key parametric studies. The results of the return losses, VSWR, realized gain and farfield radiation pattern either in 2D, 3D or polar plot views obtained are compared and analyzed. 144 pp. Englisch. Seller Inventory # 9783844328325

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Book Description LAP Lambert Acad. Publ. Mai 2011, 2011. Taschenbuch. Condition: Neu. This item is printed on demand - Print on Demand Neuware - The influences of Complementary Circular Split Ring Resonators (CCSRR) and air gap with accompanying circular microstrip patch are investigated for future wireless communication antenna. It is designed to operate from 5.850 GHz to 7.075 GHz spectrum band using microwave laminate RT/D 5880 ( r = 2.2 and thickness of 1.82 mm). The antenna structure was organized into three separate layers consisting of circular copper sheet as the ground plane (layer number one), an undersized main radiator, where the signal and energy gathered and stored, focuses and passes through to resonate its above layer (layer number two) and the slotted split ring resonators on the layer number three laminate. All layers are separated by an air gap, the positioning of coaxial feed with a small circular copper patch, the number and width of the split ring resonators corresponding to each individual circular patch are varied and analyzed as the key parametric studies. The results of the return losses, VSWR, realized gain and farfield radiation pattern either in 2D, 3D or polar plot views obtained are compared and analyzed. 144 pp. Englisch. Seller Inventory # 9783844328325

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