[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"detail-sidebar-cat-1-en-105":3,"doc-seo-190786-105":53,"doc-detail-190786-en":126},{"code":4,"msg":5,"data":6},0,"success",[7,14,19,24,29,34,39,44,49],{"id":8,"doc_module":9,"doc_module_name":10,"category_name":11,"show_sort_weight":12,"slug":13},11,1,"Template","Presentations",90,"presentations",{"id":15,"doc_module":9,"doc_module_name":10,"category_name":16,"show_sort_weight":17,"slug":18},12,"Resumes",80,"resumes",{"id":20,"doc_module":9,"doc_module_name":10,"category_name":21,"show_sort_weight":22,"slug":23},14,"Invoices",70,"invoices",{"id":25,"doc_module":9,"doc_module_name":10,"category_name":26,"show_sort_weight":27,"slug":28},15,"Posters",60,"posters",{"id":30,"doc_module":9,"doc_module_name":10,"category_name":31,"show_sort_weight":32,"slug":33},16,"Social Media",50,"social-media",{"id":35,"doc_module":9,"doc_module_name":10,"category_name":36,"show_sort_weight":37,"slug":38},17,"Forms",40,"forms",{"id":40,"doc_module":9,"doc_module_name":10,"category_name":41,"show_sort_weight":42,"slug":43},18,"Letters",30,"letters",{"id":45,"doc_module":9,"doc_module_name":10,"category_name":46,"show_sort_weight":47,"slug":48},21,"Paper Templates",5,"papers-templates",{"id":50,"doc_module":9,"doc_module_name":10,"category_name":51,"show_sort_weight":4,"slug":52},158,"General","general-158",{"code":4,"msg":54,"data":55},"ok",{"site_id":56,"language":57,"slug":58,"title":59,"keywords":60,"description":61,"schema_data":62,"social_meta":119,"head_meta":121,"extra_data":123,"updated_unix":125},105,"en","phase-variation-main-reflectarray","Phase variation (Main reflectarray)","","The document presents research on a reflectarray, focusing on phase variation and beam characteristics. The first image displays the phase variation as a function of X in meters, showing an increasing trend with a parabolic shape, reaching approximately 4.1 x 10^4 degrees. The second image illustrates two configurations for beam steering. The left panel shows a setup with focal points F1 and F2, and two beams with angles $\\theta_{b1}$ and $\\theta_{b2}$ relative to the z-axis, originating from a red element. The right panel shows a similar setup but with an additional parameter $\\theta_m = 15^{\\circ}$ for the red element and $\\theta_s = 10^{\\circ}$ for the blue element, indicating different beam steering angles. The third image presents the azimuth radiation pattern, plotting Gain in dBi against $\\theta_A$ in degrees. It compares the beam from F1 (blue line) and the beam from F2 (red line), both centered at 0 degrees. The beam from F2 exhibits a higher peak gain, reaching approximately 50 dBi, while the beam from F1 has a slightly lower peak gain. Both patterns show significant side lobes. The document implies research into optimizing reflectarray design for specific beamforming applications by analyzing phase characteristics and resulting radiation patterns.",{"@graph":63,"@context":118},[64,80,101],{"@type":65,"itemListElement":66},"BreadcrumbList",[67,71,74,77],{"item":68,"name":69,"@type":70,"position":9},"https://docshare.wps.com","Home","ListItem",{"item":72,"name":10,"@type":70,"position":73},"https://docshare.wps.com/template/",2,{"item":75,"name":51,"@type":70,"position":76},"https://docshare.wps.com/template/general/",3,{"item":78,"name":59,"@type":70,"position":79},"https://docshare.wps.com/template/phase-variation-main-reflectarray/190786/",4,{"url":78,"name":59,"@type":81,"image":82,"author":87,"headline":59,"publisher":90,"fileFormat":93,"inLanguage":57,"description":61,"dateModified":94,"datePublished":95,"encodingFormat":93,"isAccessibleForFree":96,"interactionStatistic":97},"DigitalDocument",{"url":83,"@type":84,"width":85,"height":86},"https://docshare.wps.com/thumbnails/phase-variation-main-reflectarray/190786.png","ImageObject",442,249,{"name":88,"@type":89},"Himbo","Person",{"url":68,"name":91,"@type":92},"DocShare","Organization","application/pdf","2026-09-26","2026-09-03",true,{"@type":98,"interactionType":99,"userInteractionCount":76},"InteractionCounter",{"@type":100},"ViewAction",{"@type":102,"mainEntity":103},"FAQPage",[104,110,114],{"name":105,"@type":106,"acceptedAnswer":107},"What does the first image show?","Question",{"text":108,"@type":109},"The first image shows the phase variation in degrees as a function of the position X in meters for the main reflectarray, illustrating an increasing trend that appears parabolic.","Answer",{"name":111,"@type":106,"acceptedAnswer":112},"What do the configurations in the second image represent?",{"text":113,"@type":109},"The second image displays two configurations for beam steering. These configurations involve focal points (F1, F2) and different beam angles ($\\theta_{b1}$, $\\theta_{b2}$), with variations in steering parameters ($\\theta_m$, $\\theta_s$) in the right panel.",{"name":115,"@type":106,"acceptedAnswer":116},"How do the beams from F1 and F2 compare in the azimuth radiation pattern?",{"text":117,"@type":109},"The azimuth radiation pattern in the third image shows that the beam from F2 achieves a higher peak gain of approximately 50 dBi compared to the beam from F1, which has a slightly lower peak gain. Both beams are centered at 0 degrees but exhibit significant side lobes.","https://schema.org",{"og:url":78,"og:type":120,"og:title":59,"og:site_name":91,"og:description":61},"article",{"robots":122,"canonical":78},"index,follow",{"doc_id":124,"site_id":56},190786,1790012266,{"code":4,"msg":5,"data":127},{"doc_id":124,"user_id":128,"nickname":88,"user_avatar":129,"doc_module":9,"category_id":50,"category_name":51,"doc_title":59,"doc_description":61,"doc_content":60,"file_id":130,"file_url":131,"file_type":132,"file_size":133,"view_count":76,"is_deleted":4,"is_public":9,"is_downloadable":9,"audit_status":9,"page_count":79,"language":134,"language_code":57,"site_id":56,"html_lang":57,"table_of_contents":60,"faqs":135,"seo_title":136,"seo_description":61,"update_tm":137,"read_time":73},687197100911,"https://ap-avatar.wpscdn.com/avatar/a000239b6f1da00475?x-image-process=image/resize,m_fixed,w_180,h_180&k=1785132997149421697","cbCairOO4bbGk4ea","https://ap.wps.com/l/cbCairOO4bbGk4ea","pdf",861624,"English","[{\"question\":\"What does the first image show?\",\"answer\":\"The first image shows the phase variation in degrees as a function of the position X in meters for the main reflectarray, illustrating an increasing trend that appears parabolic.\"},{\"question\":\"What do the configurations in the second image represent?\",\"answer\":\"The second image displays two configurations for beam steering. These configurations involve focal points (F1, F2) and different beam angles ($\\\\theta_{b1}$, $\\\\theta_{b2}$), with variations in steering parameters ($\\\\theta_m$, $\\\\theta_s$) in the right panel.\"},{\"question\":\"How do the beams from F1 and F2 compare in the azimuth radiation pattern?\",\"answer\":\"The azimuth radiation pattern in the third image shows that the beam from F2 achieves a higher peak gain of approximately 50 dBi compared to the beam from F1, which has a slightly lower peak gain. Both beams are centered at 0 degrees but exhibit significant side lobes.\"}]","Phase variation (Main reflectarray) | PDF",1788404955]