{"id":8975,"date":"2025-08-26T16:19:52","date_gmt":"2025-08-26T08:19:52","guid":{"rendered":"https:\/\/ascendas-asia.com\/?page_id=8975"},"modified":"2025-09-02T15:24:57","modified_gmt":"2025-09-02T07:24:57","slug":"third-party-products-solutions-for-developing-custom-motor-control-applications-with-model-based-design","status":"publish","type":"page","link":"https:\/\/ascendas-asia.com\/vi\/resources\/third-party-products-solutions-for-developing-custom-motor-control-applications-with-model-based-design\/","title":{"rendered":"Third-Party Products: Solutions for Developing Custom Motor Control Applications with Model-Based Design"},"content":{"rendered":"<div style=\"text-align: justify;\">By MathWorks Staff<\/div>\n<div style=\"text-align: justify;\">\n<hr>\n<\/div>\n<div style=\"text-align: justify;\">\n<div>\n<div style=\"font-size: 16px;\">By combining MATLAB<sup>\u00ae<\/sup><span>&nbsp;<\/span>and Simulink<sup>\u00ae<\/sup><span>&nbsp;<\/span>with third-party products, engineers can develop and deploy motor control applications using Model-Based Design. They can design control algorithms graphically in Simulink and then simulate them alongside high-fidelity models of motors and blocks representing controller hardware peripherals. After validating their algorithms via simulation, engineers can generate C or HDL code from the algorithms to run on MCU or DSP controller hardware, synthesize to FPGAs, or deploy on SoC architectures.<\/div>\n<\/div>\n<div>\n<hr>\n<\/div>\n<div>\n<div>\n<div>\n<div>\n<figure><a href=\"https:\/\/www.mathworks.com\/company\/technical-articles\/third-party-products-solutions-for-developing-custom-motor-control-applications-with-model-based-design.html#\" data-bs-toggle=\"modal\" data-bs-target=\"#modal-48c37eb2-be99-401e-bc4d-28903f1f1086\"><img decoding=\"async\" src=\"https:\/\/www.mathworks.com\/company\/technical-articles\/third-party-products-solutions-for-developing-custom-motor-control-applications-with-model-based-design\/_jcr_content\/mainParsys\/image.adapt.full.medium.jpg\/1746702215061.jpg\" alt=\"NXP Model-Based Design Toolbox\" width=\"500\" height=\"399\" sizes=\"auto, (min-width: 1200px) 1140px, (min-width: 992px) 940px, calc(100vw - 30px)\" loading=\"lazy\" srcset=\"https:\/\/www.mathworks.com\/company\/technical-articles\/third-party-products-solutions-for-developing-custom-motor-control-applications-with-model-based-design\/_jcr_content\/mainParsys\/image.adapt.150.medium.jpg\/1746702215061.jpg 150w, https:\/\/www.mathworks.com\/company\/technical-articles\/third-party-products-solutions-for-developing-custom-motor-control-applications-with-model-based-design\/_jcr_content\/mainParsys\/image.adapt.320.medium.jpg\/1746702215061.jpg 320w, https:\/\/www.mathworks.com\/company\/technical-articles\/third-party-products-solutions-for-developing-custom-motor-control-applications-with-model-based-design\/_jcr_content\/mainParsys\/image.adapt.480.medium.jpg\/1746702215061.jpg 480w, https:\/\/www.mathworks.com\/company\/technical-articles\/third-party-products-solutions-for-developing-custom-motor-control-applications-with-model-based-design\/_jcr_content\/mainParsys\/image.adapt.620.medium.jpg\/1746702215061.jpg 620w, https:\/\/www.mathworks.com\/company\/technical-articles\/third-party-products-solutions-for-developing-custom-motor-control-applications-with-model-based-design\/_jcr_content\/mainParsys\/image.adapt.full.medium.jpg\/1746702215061.jpg 1000w\" data-aem-src=\"\/content\/dam\/mathworks\/mathworks-dot-com\/cmsimages\/newsletters\/2017\/images\/NXP-MotorModel.jpg\" style=\"width: 500px; height: auto; max-width: 100%;\"><\/a><\/p>\n<div><span>&nbsp;<\/span><\/div>\n<\/figure>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<div>\n<div>\n<h4 style=\"font-weight: bold;\"><strong>NXP:&nbsp;Model-Based Design Toolbox<\/strong><\/h4>\n<\/div>\n<\/div>\n<div>\n<div style=\"font-size: 16px;\">NXP\u2019s Model-Based Design Toolbox is a toolchain for configuring and generating software to execute motor control algorithms on NXP MCUs. The toolbox provides a Simulink blockset for peripheral devices such as PWM, A\/D, and CAN, as well as an optimized motor control blockset that includes functions such as Park\/Clarke transforms and digital filters. The blocksets are integrated with an Embedded Coder<sup>\u00ae<\/sup><span>&nbsp;<\/span>target for generating and deploying code onto NXP controllers and performing software-in-the-loop and processor-in-the-loop testing.<\/div>\n<\/div>\n<div>\n<hr>\n<\/div>\n<div>\n<div>\n<p style=\"font-weight: bold;\">&nbsp;<\/p>\n<h4 style=\"font-weight: bold;\">Microchip: Motor and Controller Model Libraries, MPLAB Device Blocks<\/h4>\n<\/div>\n<\/div>\n<div>\n<div style=\"font-size: 16px;\">Microchip provides blocksets that allow the simulation of motor control algorithms running on dsPIC<sup>\u00ae<\/sup><span>&nbsp;<\/span>digital signal controllers. The Motor Control Library Blockset contains Simulink blocks for motor control applications, including reference frame transforms, a proportional-integral controller, and trigonometric functions. The Motor Model Library adds a Simulink model&nbsp;for simulating permanent-magnet synchronous motors (PMSMs). For deploying control algorithms onto dsPIC hardware, Microchip\u2019s MPLAB<sup>\u00ae<\/sup><span>&nbsp;<\/span>Device Blocks for Simulink provide peripheral blocks for digital\/analog I\/O, counters and timers, pulse width modulation (PWM) motor control, and more.&nbsp;You can add and configure these blocks in Simulink models and then generate C\/C++ code to run on dsPIC\/PIC devices.<\/div>\n<\/div>\n<div>\n<div data-emptytext=\"Action Link\">&nbsp;<\/div>\n<\/div>\n<div>\n<hr>\n<\/div>\n<div>\n<div>\n<div>\n<div>\n<figure><a href=\"https:\/\/www.mathworks.com\/company\/technical-articles\/third-party-products-solutions-for-developing-custom-motor-control-applications-with-model-based-design.html#\" data-bs-toggle=\"modal\" data-bs-target=\"#modal-47d1e794-30f1-4172-804e-2a87818d3d28\"><img decoding=\"async\" src=\"https:\/\/www.mathworks.com\/company\/technical-articles\/third-party-products-solutions-for-developing-custom-motor-control-applications-with-model-based-design\/_jcr_content\/mainParsys\/image_1752065966.adapt.full.medium.jpg\/1746702215101.jpg\" alt=\"Intel Cyclone V.\" width=\"500\" height=\"333\" sizes=\"auto, (min-width: 1200px) 1140px, (min-width: 992px) 940px, calc(100vw - 30px)\" loading=\"lazy\" srcset=\"https:\/\/www.mathworks.com\/company\/technical-articles\/third-party-products-solutions-for-developing-custom-motor-control-applications-with-model-based-design\/_jcr_content\/mainParsys\/image_1752065966.adapt.150.medium.jpg\/1746702215101.jpg 150w, https:\/\/www.mathworks.com\/company\/technical-articles\/third-party-products-solutions-for-developing-custom-motor-control-applications-with-model-based-design\/_jcr_content\/mainParsys\/image_1752065966.adapt.320.medium.jpg\/1746702215101.jpg 320w, https:\/\/www.mathworks.com\/company\/technical-articles\/third-party-products-solutions-for-developing-custom-motor-control-applications-with-model-based-design\/_jcr_content\/mainParsys\/image_1752065966.adapt.480.medium.jpg\/1746702215101.jpg 480w, https:\/\/www.mathworks.com\/company\/technical-articles\/third-party-products-solutions-for-developing-custom-motor-control-applications-with-model-based-design\/_jcr_content\/mainParsys\/image_1752065966.adapt.620.medium.jpg\/1746702215101.jpg 620w, https:\/\/www.mathworks.com\/company\/technical-articles\/third-party-products-solutions-for-developing-custom-motor-control-applications-with-model-based-design\/_jcr_content\/mainParsys\/image_1752065966.adapt.full.medium.jpg\/1746702215101.jpg 1000w\" data-aem-src=\"\/content\/dam\/mathworks\/mathworks-dot-com\/cmsimages\/newsletters\/2017\/images\/Intel-Cyclone5.jpg\" style=\"width: 500px; height: auto; max-width: 100%;\"><\/a><\/p>\n<div><span>&nbsp;<\/span><\/div>\n<\/figure>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<div>\n<div>\n<h4 style=\"font-weight: bold;\"><strong>Intel:&nbsp;FPGAs, SoC FPGAs, and DSP Builder<\/strong><\/h4>\n<\/div>\n<\/div>\n<div>\n<div style=\"font-size: 16px;\">Intel provides motor control tools to target both conventional FPGAs and SoC FPGAs that combine programmable logic with an ARM<sup>\u00ae<\/sup><span>&nbsp;<\/span>hard processor. You can design control algorithms in Simulink and then use either HDL Coder\u2122 or Intel\u2019s DSP Builder for Intel FPGAs to generate HDL code for Intel<sup>\u00ae<\/sup><span>&nbsp;<\/span>FPGAs. Using Embedded Coder and related support packages you can generate C\/C++ code for the ARM cores on FPGA SoC platforms.&nbsp;Intel\u2019s Drive-on-a-Chip reference design includes Simulink models of motor control algorithms and physical models of motors for system simulation and VHDL code generation. The reference design supports Intel MAX 10 and Cyclone<sup>\u00ae<\/sup><span>&nbsp;<\/span>V FPGAs as well as Cyclone V SoC FPGAs, with built-in support for motor control development kits.<\/div>\n<\/div>\n<div>\n<hr>\n<\/div>\n<div>\n<div>\n<div>\n<div>\n<figure><a href=\"https:\/\/www.mathworks.com\/company\/technical-articles\/third-party-products-solutions-for-developing-custom-motor-control-applications-with-model-based-design.html#\" data-bs-toggle=\"modal\" data-bs-target=\"#modal-bfee8438-29ba-4664-ac11-797a80fe595c\"><img decoding=\"async\" src=\"https:\/\/www.mathworks.com\/company\/technical-articles\/third-party-products-solutions-for-developing-custom-motor-control-applications-with-model-based-design\/_jcr_content\/mainParsys\/image_1447362659.adapt.full.medium.gif\/1746702215120.gif\" alt=\"JMAG software.\" width=\"500\" height=\"457\" sizes=\"auto, (min-width: 1200px) 1140px, (min-width: 992px) 940px, calc(100vw - 30px)\" loading=\"lazy\" srcset=\"https:\/\/www.mathworks.com\/company\/technical-articles\/third-party-products-solutions-for-developing-custom-motor-control-applications-with-model-based-design\/_jcr_content\/mainParsys\/image_1447362659.adapt.150.medium.gif\/1746702215120.gif 150w, https:\/\/www.mathworks.com\/company\/technical-articles\/third-party-products-solutions-for-developing-custom-motor-control-applications-with-model-based-design\/_jcr_content\/mainParsys\/image_1447362659.adapt.320.medium.gif\/1746702215120.gif 320w, https:\/\/www.mathworks.com\/company\/technical-articles\/third-party-products-solutions-for-developing-custom-motor-control-applications-with-model-based-design\/_jcr_content\/mainParsys\/image_1447362659.adapt.480.medium.gif\/1746702215120.gif 480w, https:\/\/www.mathworks.com\/company\/technical-articles\/third-party-products-solutions-for-developing-custom-motor-control-applications-with-model-based-design\/_jcr_content\/mainParsys\/image_1447362659.adapt.620.medium.gif\/1746702215120.gif 620w, https:\/\/www.mathworks.com\/company\/technical-articles\/third-party-products-solutions-for-developing-custom-motor-control-applications-with-model-based-design\/_jcr_content\/mainParsys\/image_1447362659.adapt.full.medium.gif\/1746702215120.gif 900w\" data-aem-src=\"\/content\/dam\/mathworks\/mathworks-dot-com\/cmsimages\/newsletters\/2017\/images\/jmag.gif\" style=\"width: 500px; height: auto; max-width: 100%;\"><\/a><\/p>\n<div><span>&nbsp;<\/span><\/div>\n<\/figure>\n<\/div>\n<\/div>\n<\/div>\n<\/div>\n<div>\n<div>\n<h4 style=\"font-weight: bold;\"><strong>JSOL:&nbsp;JMAG<\/strong><\/h4>\n<\/div>\n<\/div>\n<div>\n<div>JMAG finite element analysis software is used for developing electromechanical equipment such as motors, power converters, and actuators. JMAG can simulate magnetic flux density and electromagnetic forces in a range of motors, including permanent magnet, induction, and stepper motors. JMAG-RT extracts motor features as a precise reduced-order model provided as a Simulink block for motor control development. High-fidelity JMAG-RT models capture device performance, including nonlinear effects, saturation, and space harmonics.<\/div>\n<\/div>\n<\/div>\n<div style=\"text-align: justify;\">&nbsp;<\/div>\n<div style=\"text-align: justify;\"><small>Published 2017 &#8211; 93166v00<\/small><\/div>\n<div style=\"text-align: justify;\">&nbsp;<\/div>\n<div style=\"text-align: center;\"><small>&nbsp;<\/small> <a class=\"maxbutton-10 maxbutton maxbutton-free-trial-electricfication\" target=\"_blank\" rel=\"noopener\" href=\"\/vi\/matlab-trial-for-electrification\/\"><span class='mb-text'>Free Trial<\/span><\/a>&nbsp; &nbsp; &nbsp; &nbsp; &nbsp; <a class=\"maxbutton-1 maxbutton maxbutton-get-quote\" target=\"_blank\" rel=\"noopener\" href=\"https:\/\/ascendas-asia.com\/vi\/company\/#contact-us\"><span class='mb-text'>Request Consultation<\/span><\/a><\/div>","protected":false},"excerpt":{"rendered":"<p>By MathWorks Staff By combining MATLAB\u00ae&nbsp;and Simulink\u00ae&nbsp;with third-party products, engineers can develop and deploy motor control applications using Model-Based Design. They can design control algorithms graphically in Simulink and then simulate them alongside high-fidelity models of motors and blocks representing controller hardware peripherals. After validating their algorithms via simulation, engineers can generate C or HDL [&hellip;]<\/p>","protected":false},"author":43,"featured_media":0,"parent":18,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"content-type":"","footnotes":"","_links_to":"","_links_to_target":""},"class_list":["post-8975","page","type-page","status-publish","hentry"],"yoast_head":"<!-- This site is optimized with the Yoast SEO Premium plugin v22.1 (Yoast SEO v27.7) - https:\/\/yoast.com\/product\/yoast-seo-premium-wordpress\/ -->\n<title>Third-Party Products: Solutions for Developing Custom Motor Control Applications with Model-Based Design - TechSource Systems &amp; Ascendas Systems Group<\/title>\n<meta name=\"description\" content=\"This article explains 4 third-party products that extend Model-Based Design for motor control application design, simulation, and deployment.\" \/>\n<meta name=\"robots\" content=\"index, follow, max-snippet:-1, max-image-preview:large, max-video-preview:-1\" \/>\n<link rel=\"canonical\" href=\"https:\/\/ascendas-asia.com\/vi\/resources\/third-party-products-solutions-for-developing-custom-motor-control-applications-with-model-based-design\/\" \/>\n<meta property=\"og:locale\" content=\"vi_VN\" \/>\n<meta property=\"og:type\" content=\"article\" \/>\n<meta property=\"og:title\" content=\"Third-Party Products: Solutions for Developing Custom Motor Control Applications with Model-Based Design\" \/>\n<meta property=\"og:description\" content=\"This article explains 4 third-party products that extend Model-Based Design for motor control application design, simulation, and deployment.\" \/>\n<meta property=\"og:url\" content=\"https:\/\/ascendas-asia.com\/vi\/resources\/third-party-products-solutions-for-developing-custom-motor-control-applications-with-model-based-design\/\" \/>\n<meta property=\"og:site_name\" content=\"TechSource Systems &amp; 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