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I want to design a high gain antenna. Even amplitude excitation leads to side lobe levels no better than -13.26 dB. I want uneven amplitude excitation using chebyschev distribution. Also, cross polarization should be less than -40 in all phi cut.
ID do Projeto: 40491167
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4 freelancers estão ofertando em média ₹9.000 INR for esse trabalho

Hello Client, I am an Electronics and Electrical Communications Engineer with proven experience building and simulating complex RF architectures, including a fully optimized 4x4 microstrip patch antenna array in CST. I completely understand your goals for this project. Let's discuss for more details
₹8.500 INR em 7 dias
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Hello Sir, We have expertise in electrical engineering. We can carry out this antenna array design for you. We have worked with flexible, implantable, and communication antennas. Please, contact us to tell you more about our experience.
₹12.500 INR em 7 dias
0,0
0,0

hello, i have reviewed your project and understand you need a high-gain microstrip antenna design using uneven amplitude excitation based on Chebyshev distribution, with strict sidelobe and cross-polarization constraints. antenna design chebyshev array synthesis microstrip feed network i have experience in electromagnetic simulation and antenna array synthesis, including sidelobe control using amplitude tapering techniques and optimization of radiation patterns for performance constraints. what i can deliver: design of uneven amplitude excitation using Chebyshev distribution microstrip feed network design for targeted amplitude weighting sidelobe level optimization (improving beyond standard -13.26 dB limits) cross-polarization reduction techniques targeting < -40 dB across phi cuts MATLAB-based simulation and validation of radiation patterns array factor analysis and parameter tuning for gain optimization clear documentation of equations, design steps, and results i focus on antenna designs that are both theoretically correct and simulation-validated, ensuring results are reproducible and suitable for academic or practical RF applications. timeline: 3–7 days depending on array size and optimization requirements. i can start immediately. best regards
₹7.000 INR em 7 dias
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Hi, Understood — you need a Chebyshev-weighted microstrip array to push sidelobe levels well below the -13.26 dB limit of uniform excitation, while keeping cross-polarization under -40 dB in all phi cuts. My approach: 1. Compute Chebyshev amplitude coefficients for your target SLL (e.g. -20 to -30 dB) 2. Translate coefficients into a microstrip feed network — impedance transformers (Wilkinson or T-junction) sized to produce the correct power split per element 3. Validate full radiation pattern, HPBW, SLL, and cross-polarization in MATLAB (array factor + element pattern) 4. Iterate geometry until cross-pol < -40 dB across all phi cuts is confirmed A few quick questions before I start: • Operating frequency / band? • Number of elements and array geometry (linear or planar)? • Target SLL (e.g. -20 dB or -25 dB)? • Simulation only, or do you also need fabrication-ready dimensions? With those answers I can lock in the design and deliver within the timeline. Happy to begin immediately. Best, Ting-Jui Chou
₹8.000 INR em 7 dias
0,0
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