Amiya Kumar Mondal;Sreenath Reddy Thummaluru;K. Premkumar;Prasanna Kumar;Prerna Saxena;M. V. Kartikeyan
{"title":"环形谐振器负载对数周期天线在IEMI检测中的应用","authors":"Amiya Kumar Mondal;Sreenath Reddy Thummaluru;K. Premkumar;Prasanna Kumar;Prerna Saxena;M. V. Kartikeyan","doi":"10.1109/LEMCPA.2024.3481242","DOIUrl":null,"url":null,"abstract":"A patch-added planar log-periodic ring resonator meander dipole array (PPLPMDA) antenna with dimensions \n<inline-formula> <tex-math>$\\mathbf {27 \\times 27 \\times 0.16\\ }\\mathbf {\\mathrm {cm}}^{\\mathbf {3}}$ </tex-math></inline-formula>\n is developed to detect an intentional electromagnetic interference (IEMI) signal in the frequency range of 0.5–2 GHz. A meander line concept has been utilized in the radiator section to lower the antenna size. The lateral dimension of the PPLPMDA antenna is smaller by 36.65% and the horizontal dimension is smaller by 10% extra space here? compared to the conventional planar log-periodic dipole array antenna. The patches have been included for certain dipoles to get a high and nearly stable gain in the entire operating frequency range. The fabricated PPLPMDA antenna is tested in terms of S-parameters, far-field radiation performance, IEMI sensing, etc., and witnessed good agreement between simulation and measurement results. The measurements show that the PPLPMDA antenna has an average gain of \n<inline-formula> <tex-math>$\\mathbf {4.25 \\pm 1.25}\\mathrm {\\ }\\mathbf {\\mathrm {dB}}$ </tex-math></inline-formula>\n, a reflection coefficient \n<inline-formula> <tex-math>$| \\mathbf {S}_{\\mathbf {11}} |\\mathbf {\\leq } \\mathbf {10}\\mathrm {\\ }\\mathbf {\\mathrm {dB}}$ </tex-math></inline-formula>\n, and a stable radiation pattern. Compared to the existing designs, the proposed PPLPMDA antenna has a compact nature without sacrificing the far-field performance, which makes it more suitable for system-level integration as a nonpowered passive sensor to detect IEMI signals.","PeriodicalId":100625,"journal":{"name":"IEEE Letters on Electromagnetic Compatibility Practice and Applications","volume":"6 4","pages":"155-159"},"PeriodicalIF":0.9000,"publicationDate":"2024-10-15","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Ring Resonator Loaded Log-Periodic Antenna for IEMI Detection Application\",\"authors\":\"Amiya Kumar Mondal;Sreenath Reddy Thummaluru;K. Premkumar;Prasanna Kumar;Prerna Saxena;M. V. Kartikeyan\",\"doi\":\"10.1109/LEMCPA.2024.3481242\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"A patch-added planar log-periodic ring resonator meander dipole array (PPLPMDA) antenna with dimensions \\n<inline-formula> <tex-math>$\\\\mathbf {27 \\\\times 27 \\\\times 0.16\\\\ }\\\\mathbf {\\\\mathrm {cm}}^{\\\\mathbf {3}}$ </tex-math></inline-formula>\\n is developed to detect an intentional electromagnetic interference (IEMI) signal in the frequency range of 0.5–2 GHz. A meander line concept has been utilized in the radiator section to lower the antenna size. The lateral dimension of the PPLPMDA antenna is smaller by 36.65% and the horizontal dimension is smaller by 10% extra space here? compared to the conventional planar log-periodic dipole array antenna. The patches have been included for certain dipoles to get a high and nearly stable gain in the entire operating frequency range. The fabricated PPLPMDA antenna is tested in terms of S-parameters, far-field radiation performance, IEMI sensing, etc., and witnessed good agreement between simulation and measurement results. The measurements show that the PPLPMDA antenna has an average gain of \\n<inline-formula> <tex-math>$\\\\mathbf {4.25 \\\\pm 1.25}\\\\mathrm {\\\\ }\\\\mathbf {\\\\mathrm {dB}}$ </tex-math></inline-formula>\\n, a reflection coefficient \\n<inline-formula> <tex-math>$| \\\\mathbf {S}_{\\\\mathbf {11}} |\\\\mathbf {\\\\leq } \\\\mathbf {10}\\\\mathrm {\\\\ }\\\\mathbf {\\\\mathrm {dB}}$ </tex-math></inline-formula>\\n, and a stable radiation pattern. Compared to the existing designs, the proposed PPLPMDA antenna has a compact nature without sacrificing the far-field performance, which makes it more suitable for system-level integration as a nonpowered passive sensor to detect IEMI signals.\",\"PeriodicalId\":100625,\"journal\":{\"name\":\"IEEE Letters on Electromagnetic Compatibility Practice and Applications\",\"volume\":\"6 4\",\"pages\":\"155-159\"},\"PeriodicalIF\":0.9000,\"publicationDate\":\"2024-10-15\",\"publicationTypes\":\"Journal Article\",\"fieldsOfStudy\":null,\"isOpenAccess\":false,\"openAccessPdf\":\"\",\"citationCount\":\"0\",\"resultStr\":null,\"platform\":\"Semanticscholar\",\"paperid\":null,\"PeriodicalName\":\"IEEE Letters on Electromagnetic Compatibility Practice and Applications\",\"FirstCategoryId\":\"1085\",\"ListUrlMain\":\"https://ieeexplore.ieee.org/document/10718714/\",\"RegionNum\":0,\"RegionCategory\":null,\"ArticlePicture\":[],\"TitleCN\":null,\"AbstractTextCN\":null,\"PMCID\":null,\"EPubDate\":\"\",\"PubModel\":\"\",\"JCR\":\"Q4\",\"JCRName\":\"ENGINEERING, ELECTRICAL & ELECTRONIC\",\"Score\":null,\"Total\":0}","platform":"Semanticscholar","paperid":null,"PeriodicalName":"IEEE Letters on Electromagnetic Compatibility Practice and Applications","FirstCategoryId":"1085","ListUrlMain":"https://ieeexplore.ieee.org/document/10718714/","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q4","JCRName":"ENGINEERING, ELECTRICAL & ELECTRONIC","Score":null,"Total":0}
引用次数: 0
摘要
研制了一种尺寸为$\mathbf {27 \times 27 \times 0.16\ }\mathbf {\mathrm {cm}}^{\mathbf {3}}$的补片式平面对数周期环形谐振腔弯曲偶极子阵列(PPLPMDA)天线,用于检测频率为0.5 ~ 2 GHz的有意电磁干扰(IEMI)信号。在散热器部分采用了弯曲线的概念,以减小天线的尺寸。PPLPMDA天线的横向尺寸小36.65% and the horizontal dimension is smaller by 10% extra space here? compared to the conventional planar log-periodic dipole array antenna. The patches have been included for certain dipoles to get a high and nearly stable gain in the entire operating frequency range. The fabricated PPLPMDA antenna is tested in terms of S-parameters, far-field radiation performance, IEMI sensing, etc., and witnessed good agreement between simulation and measurement results. The measurements show that the PPLPMDA antenna has an average gain of $\mathbf {4.25 \pm 1.25}\mathrm {\ }\mathbf {\mathrm {dB}}$ , a reflection coefficient $| \mathbf {S}_{\mathbf {11}} |\mathbf {\leq } \mathbf {10}\mathrm {\ }\mathbf {\mathrm {dB}}$ , and a stable radiation pattern. Compared to the existing designs, the proposed PPLPMDA antenna has a compact nature without sacrificing the far-field performance, which makes it more suitable for system-level integration as a nonpowered passive sensor to detect IEMI signals.
Ring Resonator Loaded Log-Periodic Antenna for IEMI Detection Application
A patch-added planar log-periodic ring resonator meander dipole array (PPLPMDA) antenna with dimensions
$\mathbf {27 \times 27 \times 0.16\ }\mathbf {\mathrm {cm}}^{\mathbf {3}}$
is developed to detect an intentional electromagnetic interference (IEMI) signal in the frequency range of 0.5–2 GHz. A meander line concept has been utilized in the radiator section to lower the antenna size. The lateral dimension of the PPLPMDA antenna is smaller by 36.65% and the horizontal dimension is smaller by 10% extra space here? compared to the conventional planar log-periodic dipole array antenna. The patches have been included for certain dipoles to get a high and nearly stable gain in the entire operating frequency range. The fabricated PPLPMDA antenna is tested in terms of S-parameters, far-field radiation performance, IEMI sensing, etc., and witnessed good agreement between simulation and measurement results. The measurements show that the PPLPMDA antenna has an average gain of
$\mathbf {4.25 \pm 1.25}\mathrm {\ }\mathbf {\mathrm {dB}}$
, a reflection coefficient
$| \mathbf {S}_{\mathbf {11}} |\mathbf {\leq } \mathbf {10}\mathrm {\ }\mathbf {\mathrm {dB}}$
, and a stable radiation pattern. Compared to the existing designs, the proposed PPLPMDA antenna has a compact nature without sacrificing the far-field performance, which makes it more suitable for system-level integration as a nonpowered passive sensor to detect IEMI signals.