• Inquiry List(0)
English
繁體中文
简体中文
한국어
日本語
  • Login
  • Products
    Computer-On-Module
    • COM-HPC
    • COM Express
    • OSM
    • SMARC
    • Qseven
    • ETX
    GPU Solutions
    • NVIDIA MXM GPU Modules
    • NVIDIA Graphics Solutions
    • Intel Arc MXM GPU Modules
    • Intel Arc Graphics Card
    Rugged Computing
    • CompactPCI
    • CompactPCI Serial
    • VPX
    • PC104
    • AVA Railway Rugged Computers
    • PIDS
    Edge Computing Platforms
    • Industrial PCs, Motherboards, & SBCs
    • Embedded Computers & IoT Gateways
    • Edge AI Platforms
    • AI Smart Cameras
    • Robotic Controllers
    • Industrial Solid State Drives
    Industrial Display Systems and Panel PCs
    • Industrial Touch Monitors
    • Open Frame Panel PCs
    • All-in-One Panel PCs
    • Rugged Panel PCs
    • Digital Signage Players
    Automotive Computing
    • Autonomous Driving Solutions
    • AI-ADAS Solution
    Networking & Servers
    • AI GPU Servers
    • Industrial, Telecom Servers
    • Network Security Appliances
    • Private 5G Network Solution-MicroRAN
    Automation & Control
    • Machine Vision
    • Motion Control & I/O
    • EtherCAT Motion Control Solutions
    • HMI Panel PCs
    • Data Acquisition
    • GPIB & Digitizers
    • PXI Platforms & Modules
    • Autonomous Mobile Robots
    • Industrial Gateway Solutions
    Design & Manufacturing Services
    • DMS+ (ODM/OEM Services)
    Healthcare Computing & Monitors
    • Medical Panel PCs
    • Medical Monitors
    • Medical Box PCs
    Gaming Platforms & Monitors
    • Gaming-specific Solutions
    • Generic Solutions
    • Gaming Monitors
    • Advanced Gaming Architectures
    Software
    • EdgeGO Device Management Software
  • Industries
    Automotive Defense & Aviation Healthcare Gaming Industrial Automation Networking and Communications Retail & Logistics Semiconductor Solutions Smart Cities Test & Measurement Railway Robotics

    Automotive

    automotive computing

    With cutting-edge autonomous driving computing platforms that pave the way for safer and more productive travel, ADLINK's solutions provide you powerful computing capabilities to fulfill autonomous and advanced driver assistance system (ADAS) technologies as well as rugged design for automotive use.

    Learn More

    Defence & Aviation

    Defence & Aviation

    In the defense aviation arena, it is of paramount importance to accurately observe the environment and make fast and reliable decisions, leading to timely action. ADLINK rugged systems and Data Distribution Service (DDS) are a key part of a larger data-focused infrastructure that collects, stores, analyzes, and transfers information from the field to the decision-maker.

    Learn More

    Healthcare

    Healthcare

    ADLINK is addressing the needs of healthcare digitization with a focus on medical visualization devices and medically-certificated solutions. By leveraging PENTA's design and manufacturing capabilities in the medical field, ADLINK's healthcare solutions facilitate digital applications in diverse healthcare environments.

    Learn More

    Gaming

    gaming

    ADLINK Gaming provides global gaming machine manufacturers comprehensive solutions through our hardware, software, and display offerings. Uniquely combining computer expertise with a cutting-edge software stack and a deep understanding of the gaming industry’s requirements and regulations, we back up our customers so they can focus on creating the world’s best games.

    Learn More

    Industrial Automation

    Industrial Automation

    Industrial automation is a crucial facet of global manufacturing industries. ADLINK's flexible selection of system-, platform-, and product-based solutions overcomes the extreme environmental rigors of manufacturing deployments and delivers connected, fault-free performance on the factory floor.

    Learn More

    Networking and Communications

    Overview
    5G & MEC Cyber Security

    Retail & Logistics

    Retail Logistics

    Maintaining superior customer service and on-time delivery while simultaneously reducing retail shrinkage and increasing employee productivity can be very difficult to achieve when shipping high volumes of packages each day. ADLINK's solutions make customers' packages and pallets intelligent, efficiently connecting their entire supply chain and improving warehouse logistics.

    Learn More

    Semiconductor Solution

    Semiconductor Solution

    Everything is essentially driven by chips, and to suit the needs of diverse applications, a perfect wafer manufacturing process is necessary to ensure everything from quality to efficiency and productivity.

    Learn More

    Smart City

    Smart City

    A smart city is an urban area that implements Internet of Things sensors to collect data from a variety of sources and uses the insights gained from that data to manage assets, resources, and services efficiently. ADLINK's data-to-decision solutions incorporate video analytics, reliable design, deliver stability and reliability, and are an ideal choice to realize an efficient smart city.

    Learn More

    Test & Measurement

    Test & Measurement

    Test and measurement focuses on dedicated equipment for analysis, validation, and verification of electronic device measurement and end products. ADLINK continues to expand its T&M offerings with innovative products, meeting the unique needs of high-speed and high-bandwidth applications.

    Learn More

    Railway

    railway solution

    Our Rugged by Design CompactPCI/CompactPCI Serial, computer-on-modules, industrial-grade system and panel computer product portfolio has been specifically selected for onboard ATO/DMI and wayside CTC/RBC/TSRS railway solutions. ADLINK’s exceptional flexibility in design and manufacturing has been utilized by top rail signaling providers worldwide.

    Learn More

    Robotics

    Robotics

    Autonomous Mobile Robots (AMRs) are able to carry out their jobs with zero to minimal oversight by human operators. Facilities such as schools, hospitals, shopping malls, and factories in particular can use a swarm of AMRs to improve operational efficiency and quality of life.

    Learn More

    Featured Solutions

    5G MEC

    Autonomous Vehicle

    GPU Solutions

    ROS 2 Solution

    Smart Manufacturing

  • Strategic Partners
    AMD Ampere Arm Intel MediaTek NVIDIA NXP Qualcomm

    AMD-based Solutions

    AMD-based Solutions by ADLINK

    Empower your edge computing with ADLINK, a leading company enabling edge solutions. Leverage AMD's high performance, secure integration, and power efficiency advantages for a wide range of edge, networking, and edge systems with x86 core architecture. Experience superior processing and graphics performance with ADLINK's utilization of AMD Ryzen™ Embedded series, powered by Radeon™ RX, perfect for industrial, medical, automation and gaming applications.

    Learn More

    Ampere-based Solutions

    Ampere-based Solutions by ADLINK

    Experience the future of edge computing with our comprehensive offering, which includes the Ampere Altra-based COM-HPC module, a developer platform and/or dev kit. Dive in now to unleash superior performance, energy efficiency, and optimized TCO in applications including but not limited to industrial automation, autonomous vehicles, transportation, healthcare, video surveillance, and energy management.

    Learn More

    Arm-based Solutions

    Arm-based Solutions by ADLINK

    Based on Arm architecture, ADLINK also collaborates with Ampere, NXP, MediaTek, Qualcomm, and Rockchip in module computing development and value-added solutions across varied industries, including smart manufacturing, autonomous driving, robotics, AMR, drone, transportation, logistics, retail, infotainment, healthcare, security, and more.

    With plug-and-play tools, development kits, and all-encompassing systems, ADLINK and Arm empower developers to accelerate and realize their innovations.

    Learn More

    Intel-based Solutions

    Intel-based Solutions by ADLINK

    ADLINK is a Titanium member in Intel® Partner Alliance. From modular computing to system-ready use cases, ADLINK works closely with Intel to provide scalable, interoperable solutions that accelerate your intelligent device deployment with end-to-end analytics.

    Utilizing Intel-based modules, ADLINK accelerates your products’ time to market with edge AI platform development support while addressing diverse industry pain points, such as in networking, smart manufacturing, autonomous driving, AMR, transportation, healthcare, retail, and infotainment.

    Learn More

    MediaTek-based Solutions

    MediaTek-based Solutions by ADLINK

    ADLINK Technology and MediaTek are strategic partners that deliver innovative and powerful solutions for edge computing and edge AI applications. Leveraging MediaTek's flagship, power-efficient Genio platform SoCs and ADLINK's expertise in embedded and rugged designs, they provide high-performance, energy-efficient, and reliable modules and platforms in accomplishing various IoT use cases, such as smart home, human-machine interface, multimedia, industrial IoT, and robotics.

    Learn More

    NVIDIA-based Solutions

    Qualcomm-based Solutions by ADLINK

    To fulfill industry-specific requirements, ADLINK is able to efficiently develop edge AI platforms, AI smart cameras, medical platforms, and AI portable GPU accelerators based on NVIDIA Jetson modules, the NVIDIA IGX platform, and RTX Embedded GPUs for applicable industries, including smart manufacturing, autonomous driving, autonomous mobile robots (AMR), robotics, transportation, healthcare, logistics, retail, infotainment, AI development, professional graphics, and gaming.

    Learn More

    NXP-based Solutions

    NXP-based Solutions by ADLINK

    Utilizing NXP's i.MX 8 and i.MX 9 series technology, ADLINK offers edge-connected solutions to assist medical, test & measurement, automation, and smart city customers reduce TCO. This combination of NXP's technology with ADLINK's R&D experience in edge computing provides versatile and dynamic solutions for critical applications.

    Learn More

    Qualcomm-based Solutions

    Qualcomm-based Solutions by ADLINK

    Qualcomm Technologies’ portfolio of leading robotics and drones solutions is driving next-generation use cases, including autonomous deliveries, mission critical use cases, commercial and enterprise drone applications and more.

    Among them, the Qualcomm QRB5165 solution is designed to help build consumer, enterprise or industrial robots with 5G connectivity, on-device AI and machine learning, superior computing, and intelligent sensing capabilities. By adopting Qualcomm QRB5165, ADLINK’s module will enable the proliferation of 5G in robotics and intelligent systems.

    Learn More
  • Support

    Support

    Partner CentereRMA ServicesADLINK DDS Support

    Downloads

    Software & DriversADLINK DDS DownloadsPublicationsContent HubADLINK GitHub

    Contact

    Ask an ExpertWhere to Buy

    No matter you need to get product pricing and availability or need assistance with technical support, we are here for you.

    Learn More
  • About

    Values

    Quality Policy and ResourcesAlliances and ConsortiaADLINK SustainabilityEnviromental Protection & ResponsibilitiesCapabilitesProduct Security

    Company

    About ADLINKMission and VisionInvestor RelationsWorldwide OfficesLogo and Brand GuidelinesCareers

    Newsroom

    News & EventsPodcastBlogs
    Support

    Check out the latest news and explore ADLINK featured blogs.

    Learn More
  • Home
  • Industries
  • Test & Measurement
  • Technical Papers
  • An Inverter Output Performance Test System
  • Home
  • Industries
  • Test & Measurement
  • Technical Papers
  • An Inverter Output Performance Test System
English
繁體中文
简体中文
한국어
日本語
  • Login
  • Login
  • home
    • Products
      Computer-On-Module+ GPU Solutions+ Rugged Computing+ Edge Computing Platforms+ Industrial Display Systems and Panel PCs+ Automotive Computing+ Networking & Servers+ Automation & Control+ Design & Manufacturing Services+ Healthcare Computing & Monitors+ Gaming Platforms & Monitors+ Software+
      COM-HPCCOM ExpressOSMSMARCQsevenETX
      NVIDIA MXM GPU ModulesNVIDIA Graphics SolutionsIntel Arc MXM GPU ModulesIntel Arc Graphics Card
      CompactPCICompactPCI SerialVPXPC104AVA Railway Rugged ComputersPIDS
      Industrial PCs, Motherboards, & SBCsEmbedded Computers & IoT GatewaysEdge AI PlatformsAI Smart CamerasRobotic ControllersIndustrial Solid State Drives
      Industrial Touch MonitorsOpen Frame Panel PCsAll-in-One Panel PCsRugged Panel PCsDigital Signage Players
      Autonomous Driving SolutionsAI-ADAS Solution
      AI GPU ServersIndustrial, Telecom ServersNetwork Security AppliancesPrivate 5G Network Solution-MicroRAN
      Machine VisionMotion Control & I/OEtherCAT Motion Control SolutionsHMI Panel PCsData AcquisitionGPIB & DigitizersPXI Platforms & ModulesAutonomous Mobile RobotsIndustrial Gateway Solutions
      DMS+ (ODM/OEM Services)
      Medical Panel PCsMedical MonitorsMedical Box PCs
      Gaming-specific SolutionsGeneric SolutionsGaming MonitorsAdvanced Gaming Architectures
      EdgeGO Device Management Software
      AdvancedTCA Switch BladeAdvancedTCA PlatformAdvancedTCA Processor Blade
      Embedded Flash Storage
      COM-HPC Server Type COM-HPC Client Type
      COM Express Type 6 COM Express Type 7 COM Express Type 10 COM Express Type 2
      MXM 3.1 Type A MXM 3.1 Type B
      Pocket AI (Portable GPU)
      MXM-AXe MXM-AXe Dev Kit
      3U CompactPCI 2.0 / 2.3 Blades 6U CompactPCI 2.0 Blades 3U CompactPCI Serial Blades CompactPCI Switches 3U Enclosures & Systems 6U Enclosures & Systems Peripherals & Accessories 6U Rear Transition Modules CompactPCI Backplane Power Supplies Intelligent Railway Platforms
      3U VPX Processor Blades 6U VPX Processor Blades VPX Graphics Cards & XMC Modules
      Mini-ITX Motherboards Expandable Fanless Embedded PCs Integrated Fanless Embedded PCs ATX Motherboards Embedded Boards IPC Systems PICMG Single Board Computers Passive Backplanes Industrial Computer Peripherals Industrial Computer Chassis
      Powered By NVIDIA Jetson
      ROS2 Solutions ADLINK ROS2 Github NeuronSDK
      2U Network Appliance 4U Network Appliance
      Frame Grabbers/Video Capture Cards Image Analysis Tool Smart Camera Vision Systems AI Machine Vision Device
      Centralized Motion Controller Distributed Motion Controller Encoder & Trigger Board Motion Software & Utility
      Machine Condition Monitoring Data Acquisition (DAQ) Digitizers
      PXI Chassis PXI Controller PXI/cPCI Modules Remote Controller
      AMR
    • Industries
      Automotive Defense & Aviation Healthcare Gaming Industrial Automation Networking and Communications Retail & Logistics Semiconductor Solutions Smart Cities Test & Measurement Railway Robotics

      Automotive

      automotive computing

      With cutting-edge autonomous driving computing platforms that pave the way for safer and more productive travel, ADLINK's solutions provide you powerful computing capabilities to fulfill autonomous and advanced driver assistance system (ADAS) technologies as well as rugged design for automotive use.

      Learn More

      Defence & Aviation

      Defence & Aviation

      In the defense aviation arena, it is of paramount importance to accurately observe the environment and make fast and reliable decisions, leading to timely action. ADLINK rugged systems and Data Distribution Service (DDS) are a key part of a larger data-focused infrastructure that collects, stores, analyzes, and transfers information from the field to the decision-maker.

      Learn More

      Healthcare

      Healthcare

      ADLINK is addressing the needs of healthcare digitization with a focus on medical visualization devices and medically-certificated solutions. By leveraging PENTA's design and manufacturing capabilities in the medical field, ADLINK's healthcare solutions facilitate digital applications in diverse healthcare environments.

      Learn More

      Gaming

      gaming

      ADLINK Gaming provides global gaming machine manufacturers comprehensive solutions through our hardware, software, and display offerings. Uniquely combining computer expertise with a cutting-edge software stack and a deep understanding of the gaming industry’s requirements and regulations, we back up our customers so they can focus on creating the world’s best games.

      Learn More

      Industrial Automation

      Industrial Automation

      Industrial automation is a crucial facet of global manufacturing industries. ADLINK's flexible selection of system-, platform-, and product-based solutions overcomes the extreme environmental rigors of manufacturing deployments and delivers connected, fault-free performance on the factory floor.

      Learn More

      Networking and Communications

      Overview
      5G & MEC Cyber Security

      Retail & Logistics

      Retail Logistics

      Maintaining superior customer service and on-time delivery while simultaneously reducing retail shrinkage and increasing employee productivity can be very difficult to achieve when shipping high volumes of packages each day. ADLINK's solutions make customers' packages and pallets intelligent, efficiently connecting their entire supply chain and improving warehouse logistics.

      Learn More

      Semiconductor Solution

      Semiconductor Solution

      Everything is essentially driven by chips, and to suit the needs of diverse applications, a perfect wafer manufacturing process is necessary to ensure everything from quality to efficiency and productivity.

      Learn More

      Smart City

      Smart City

      A smart city is an urban area that implements Internet of Things sensors to collect data from a variety of sources and uses the insights gained from that data to manage assets, resources, and services efficiently. ADLINK's data-to-decision solutions incorporate video analytics, reliable design, deliver stability and reliability, and are an ideal choice to realize an efficient smart city.

      Learn More

      Test & Measurement

      Test & Measurement

      Test and measurement focuses on dedicated equipment for analysis, validation, and verification of electronic device measurement and end products. ADLINK continues to expand its T&M offerings with innovative products, meeting the unique needs of high-speed and high-bandwidth applications.

      Learn More

      Railway

      railway solution

      Our Rugged by Design CompactPCI/CompactPCI Serial, computer-on-modules, industrial-grade system and panel computer product portfolio has been specifically selected for onboard ATO/DMI and wayside CTC/RBC/TSRS railway solutions. ADLINK’s exceptional flexibility in design and manufacturing has been utilized by top rail signaling providers worldwide.

      Learn More

      Robotics

      Robotics

      Autonomous Mobile Robots (AMRs) are able to carry out their jobs with zero to minimal oversight by human operators. Facilities such as schools, hospitals, shopping malls, and factories in particular can use a swarm of AMRs to improve operational efficiency and quality of life.

      Learn More

      Featured Solutions

      5G MEC

      Autonomous Vehicle

      GPU Solutions

      ROS 2 Solution

      Smart Manufacturing

    • Strategic Partners
      AMD Ampere Arm Intel MediaTek NVIDIA NXP Qualcomm

      AMD-based Solutions

      AMD-based Solutions by ADLINK

      Empower your edge computing with ADLINK, a leading company enabling edge solutions. Leverage AMD's high performance, secure integration, and power efficiency advantages for a wide range of edge, networking, and edge systems with x86 core architecture. Experience superior processing and graphics performance with ADLINK's utilization of AMD Ryzen™ Embedded series, powered by Radeon™ RX, perfect for industrial, medical, automation and gaming applications.

      Learn More

      Ampere-based Solutions

      Ampere-based Solutions by ADLINK

      Experience the future of edge computing with our comprehensive offering, which includes the Ampere Altra-based COM-HPC module, a developer platform and/or dev kit. Dive in now to unleash superior performance, energy efficiency, and optimized TCO in applications including but not limited to industrial automation, autonomous vehicles, transportation, healthcare, video surveillance, and energy management.

      Learn More

      Arm-based Solutions

      Arm-based Solutions by ADLINK

      Based on Arm architecture, ADLINK also collaborates with Ampere, NXP, MediaTek, Qualcomm, and Rockchip in module computing development and value-added solutions across varied industries, including smart manufacturing, autonomous driving, robotics, AMR, drone, transportation, logistics, retail, infotainment, healthcare, security, and more.

      With plug-and-play tools, development kits, and all-encompassing systems, ADLINK and Arm empower developers to accelerate and realize their innovations.

      Learn More

      Intel-based Solutions

      Intel-based Solutions by ADLINK

      ADLINK is a Titanium member in Intel® Partner Alliance. From modular computing to system-ready use cases, ADLINK works closely with Intel to provide scalable, interoperable solutions that accelerate your intelligent device deployment with end-to-end analytics.

      Utilizing Intel-based modules, ADLINK accelerates your products’ time to market with edge AI platform development support while addressing diverse industry pain points, such as in networking, smart manufacturing, autonomous driving, AMR, transportation, healthcare, retail, and infotainment.

      Learn More

      MediaTek-based Solutions

      MediaTek-based Solutions by ADLINK

      ADLINK Technology and MediaTek are strategic partners that deliver innovative and powerful solutions for edge computing and edge AI applications. Leveraging MediaTek's flagship, power-efficient Genio platform SoCs and ADLINK's expertise in embedded and rugged designs, they provide high-performance, energy-efficient, and reliable modules and platforms in accomplishing various IoT use cases, such as smart home, human-machine interface, multimedia, industrial IoT, and robotics.

      Learn More

      NVIDIA-based Solutions

      Qualcomm-based Solutions by ADLINK

      To fulfill industry-specific requirements, ADLINK is able to efficiently develop edge AI platforms, AI smart cameras, medical platforms, and AI portable GPU accelerators based on NVIDIA Jetson modules, the NVIDIA IGX platform, and RTX Embedded GPUs for applicable industries, including smart manufacturing, autonomous driving, autonomous mobile robots (AMR), robotics, transportation, healthcare, logistics, retail, infotainment, AI development, professional graphics, and gaming.

      Learn More

      NXP-based Solutions

      NXP-based Solutions by ADLINK

      Utilizing NXP's i.MX 8 and i.MX 9 series technology, ADLINK offers edge-connected solutions to assist medical, test & measurement, automation, and smart city customers reduce TCO. This combination of NXP's technology with ADLINK's R&D experience in edge computing provides versatile and dynamic solutions for critical applications.

      Learn More

      Qualcomm-based Solutions

      Qualcomm-based Solutions by ADLINK

      Qualcomm Technologies’ portfolio of leading robotics and drones solutions is driving next-generation use cases, including autonomous deliveries, mission critical use cases, commercial and enterprise drone applications and more.

      Among them, the Qualcomm QRB5165 solution is designed to help build consumer, enterprise or industrial robots with 5G connectivity, on-device AI and machine learning, superior computing, and intelligent sensing capabilities. By adopting Qualcomm QRB5165, ADLINK’s module will enable the proliferation of 5G in robotics and intelligent systems.

      Learn More
    • Support

      Support

      Partner CentereRMA ServicesADLINK DDS Support

      Downloads

      Software & DriversADLINK DDS DownloadsPublicationsContent HubADLINK GitHub

      Contact

      Ask an ExpertWhere to Buy

      No matter you need to get product pricing and availability or need assistance with technical support, we are here for you.

      Learn More
    • About

      Values

      Quality Policy and ResourcesAlliances and ConsortiaADLINK SustainabilityEnviromental Protection & ResponsibilitiesCapabilitesProduct Security

      Company

      About ADLINKMission and VisionInvestor RelationsWorldwide OfficesLogo and Brand GuidelinesCareers

      Newsroom

      News & EventsPodcastBlogs
      Support

      Check out the latest news and explore ADLINK featured blogs.

      Learn More
English
繁體中文
简体中文
한국어
日本語
  • Login

An Inverter Output Performance Test System

ZANG Yi,
Henan Industrial University

Application

 

Inverter based speed regulation for motors of high-voltage and power

Challenge

 

A high-voltage inverter employs multiple cascaded low-voltage power units for high-voltage output with good fault tolerance. In case of component unit(s) failures, the system can maintain normal operation with reduced capacity for steady production by masking the fault units along with specific troubleshooting measures. This study designs a system for real-time monitoring and analysis on a range of indicators of output power quality from unit cascaded high-voltage inverters employing three troubleshooting measures. The proposed design focuses on maintaining the same output voltage performance before and after unit failure to minimize failure-related impacts on system operation.

Solution

 

The PCI-9846 based inverter output performance testing system employs a system control console built with the LabVIEW virtual instrument software platform to obtain reference waves under different troubleshooting measures addressing corresponding consoles. Tests are conducted on multi-unit cascaded inverter simulators and retrieve 3-phase voltage signals with the ADLINK PCI-9846 digitizer for analysis. Key performance benchmarks including amplitude, frequency, and total harmonic content of three-phase voltage phase, are acquired to check output status under normal and abnormal operation with different control algorithms.

 

Power-saving inverter driven motors meet domestic requirements of saving energy and emission reduction. For high-voltage and large capacity applications inverter devices are deployed with high-voltage large-capacity switches and multi-level topology structures. The cascaded inverters are multi-level inverters with good application potential. They are adopted by mission critical applications, e.g., driving fans and pumps, requiring reliable and non-stop operation (at reduced capacity) even in case of system failure. The energy saving benefits of high-voltage inverter driven motors requires system reliability at the same time. That is, the high-voltage inverter devices must feature fault tolerance to ensure continuous system operation by masking failed assemblies and modules and running alternative control mechanisms automatically.

 

A high-voltage inverter employs multiple cascaded low-voltage power units for high-voltage output with good fault tolerance. In case of component unit(s) failures the system can maintain normal operation with reduced capacity for steady production by masking the fault units along with specific troubleshooting measures. Typical troubleshooting measures mask off the failed unit while running modules in the other two phases to maintain the balanced operation of the inverter. The wasted capacity of these two units mandates further studies on the troubleshooting measures taken by cascaded inverters in normal and fault operation modes. The PCI-9846 digitizer-based inverter output performance testing system proposed by this study performs real-time monitoring and analysis on various quality indicators of output power provided by unit cascaded high-voltage inverters after different troubleshooting measures�Xthree in this study�Xwere taken. Performance indicators of the system output voltage must maintain the same level before any unit failure to minimize impacts of system failure on operations. This testing system employs a system control console built with the LabVIEW virtual instrument software platform to obtain reference waves under different troubleshooting measures addressing corresponding consoles. Tests are conducted on multi-unit cascaded inverter simulator and retrieve 3-phase voltage signals with the ADLINK PCI-9846 digitizer for analysis. Key performance benchmarks including amplitude, frequency, and total harmonic content of three-phase voltage phase are acquired to check output status under normal and abnormal operation with different control algorithms.

Structure and mechanism of unit cascaded high-voltage inverter

 

The unit cascaded high-voltage inverter employs multiple cascaded low-voltage power units for direct high-voltage output with structure outlined in Figure 1. The H bridges, see Figure 1, are multi-isolation transformers with a primary side for high-voltage input and a secondary for isolated low-voltage output to individual power units. Each of the system's three phases features one three-phase input and a one-phase output AC-DC-AC inverter of unified structure. See Figure 2 for the structure of the power unit.

Figure 1: Structure of unit cascaded inverter
Figure 2: Structure of power unit

The power unit is powered by one secondary winding of the input transformer. The power units and secondary windings are insulated from themselves and each other. When cascaded in six units for each phase then each unit is subject to the total output current but 1/6 of the output phase voltage and 1/18 of the output power. For a 6KV motor system the output voltage and frequency of each unit can be individually regulated in the range of 0~590V and 0~50Hz for inverter control.

 

The power unit of a cascaded high-voltage inverter employs carrier phase shift PWM control technology. The inverters shown in Figure 1 are modulated by n-pairs of triangle carriers phase shifting 60o/n in sequence against the fundamental voltage. A 2*n+1 levels of hierarchical phase voltage wave can be generated by stacking up a total of n of each signals modulated by A-phase base carrier control n pieces of power units, A1��An. This is equivalent to a 6*n pulse frequency conversion which offsets all the harmonics below 6*n-1 and leads to total voltage and current distortion as low as around 1%. This can certainly be considered a perfect harmonic free inverter. Power units in one phase of the inverter output the same fundamental voltage. By cascading carriers of each unit at equally staggered phases, then a 12KHz equivalent output phase voltage switch frequency can be acquired by cascading 6 power units, with IGBT switch frequency at 1KHz, from each phase. Power units with low switch frequency reduce switch loss while high equivalent switch output frequency and multiple levels improves output waveform significantly. Better waveforms not only reduce output harmonics but also reduce noise, du/dt value and the motor's torque ripples. All of these enable the inverter to impose no special requirements on motors when applied in speed regulation power. This kind of inverter is suitable for general high-voltage motors without derating and special limits on length of output cables.

Analysis on troubleshooting measures for unit cascaded high-voltage inverter

 

To ensure the unit cascaded inverter keeps running even with some failed power units for enhanced reliability, it is common to mask off the failed unit together with running modules in the other two phases to maintain the balanced operation of the inverter. This leads to wasted capacity of two units in normal condition and reduced maximum output capacity. However, this approach enjoys the merit of simplicity in theory and maturity in technology.

 

Neutral point shift (NPS) technology may be used to improve output performance of a multi-level inverter by making the most of the remaining normally functioning units. The neutral point of an inverter is floating and not connected to the center point of load (as shown in commonly available 3-phase motors). This enables the neutral point of an inverter to be away from the load center. Unbalanced three-phase voltage of an inverter's output can change to three-phase balanced load line voltage by regulating the phases of voltage. This regulation measure is equal to exiting a three-phase symmetric line voltage by stacking a zero sequence component to asymmetric output voltage from remaining units in each phase after the failure of some of them. As center points are not connected directly, this line voltage can ensure symmetric and steady operation after symmetric load phase voltage is generated over line voltage load. As the three phases are not symmetric to each other, the conventional optimization control approach of injecting a third harmonic for improved unit voltage utilization rate does not apply any more. The neutral point shift approach does not make the most of system output capacity. In certain system failure cases, the maximum output capacity is even worse than the conventional approach of masking the failed unit and wasting the other two units in the remaining phases.

 

This document [2] proposed a simple reference wave generation mechanism to replace the sine wave for inverter unit control. It makes the most of output capacity of each unit, improves the total output of the system, and reduces impacts of failures on load without changing current troubleshooting measures. It has the merits of simplicity and ease of use, and can be employed by changing the shapes of reference waveforms in accordance with failure types in the carrier control system and requires little modification to current troubleshooting mechanisms. It requires no shift angle calculation compared with the neutral point shift method.

 

Take the example of a six-unit cascaded system. The troubleshooting methods and output status when one unit in phase A fails are shown in Figure 3.

Figure 3: The three troubleshooting methods

A test system based on LabVIEW and PCI-9846

 

This study builds a test system with the LabVIEW virtual instrument software platform and ADLINK PCI-9846 high-speed digitizer to verify output performance of cascaded inverters under the three troubleshooting measures described above. The LabVIEW features graphic system design concepts and unique parallel data flow characteristics, and has merits in console interface creation, troubleshooting method design, signal collection and voltage signal performance analysis. As the equivalent output phase voltage switch frequency of cascaded inverters are multiple times that of individual switch devices, and as output voltage harmonics are concentrated in higher bands, it mandates better sampling rates provided by data gathering devices for analyzing inverter output characteristics. Normal data gathering devices can hardly meet such high sampling demands. The modularized instrument PCI-9846 features high sampling rates, up to 40MHz, with precision and good compatibility. With four embedded high-linearity 16-bit high precision A/D and four channels for concurrent sampling the PCI-9846 is ideal for the collection and processing of 3-phase output high frequency signals from cascaded inverters. The LabVIEW drivers provided by ADLINK reduces system development cycles as there are almost no compatibility issues.

 

See Figure 4 for block diagram of a cascaded inverter's output characteristics test system based on the LabVIEW virtual instrument software platform and ADLINK PCI-9846 digitizer.

Figure 4: The test system block diagram

The said system used a PC to code control solutions and generate corresponding control signals in the LabVIEW virtual instrument platform, according to the three troubleshooting mechanisms described above. The control signals generated by the switch devices then send the data output device to the signal conditioning circuit for processing and transferral to the experiment cascaded inverter. The output signals from the inverter are then sent to the PCI 9846 via the sensors and collected by the data capturing programs in LabVIEW for high-speed collection and storage. The LabVIEW analysis software then analyzes collected signals to finish the cycle of characteristics analysis for output from the cascaded inverter.

Signal collection and analysis results

 

See Figure 5 for the console menu of the test system's LabVIEW virtual instrument platform. A sample analysis on a six-unit cascaded system is presented here along with reference waveforms derived from different troubleshooting mechanisms. See below for a review on the reference waveform equivalent phase voltage and the derived equivalent line voltage waveforms.

Figure 5: The main menu of the test system

Three troubleshooting mechanisms are used in the demo program with brief descriptions on working theories in each option tab. The indicator lights to the left suggest operation status of a six-unit cascaded inverter. An off indicator means a failed and masked unit. The operation status of three failed units in Phase A is shown in Figure 5. The system output capacity can be seen on top of the indicator lights. It shows that the system maintains near 75% output capacity in case of three failed units in Phase A with an optimized regulation method of injecting partial zero sequence voltage. This is much better than the 50% output capacity of the conventional system. Output from unified effective phase and line voltages, total harmonic distortion of phase voltages, and phases of 3-phase line voltages are displayed in a frame below indicator lights. The option tab to the right provides 3-phase phase voltages, output waveforms of line voltage, and harmonic analysis for one phase of the three. The zero-sequence voltage injection method is available for improved system output capacity by better DC voltage use. The operation results suggest that the proposed troubleshooting method masks failed units only. This leads to asymmetric phase voltages. However, the line voltage output retains equal amplitude and three phase balance and without a third harmonic component by regulating by regulating amplitudes and phases according to types of failures.

 

Output performances under various types of failures can be seen in Table 1. The Failure Type column gives the total number of normal units left in each of the three phases, e.g. (466) indicates that there are 4, 6, and 6 units working in phase A, B, and C respectively. That is, 2 units in phase A have failed. The maximum output capacity under each troubleshooting method is 66.70%, 76.30%, and 83.40%. respectively. It is clear now that the optimized neutral point shift with partial zero sequence voltage injection troubleshooting method gives the maximum system output for almost every failure type.

Table 1: Output performances by different troubleshooting methods

This study compared three troubleshooting measures in handling failures of cascaded inverters. An output characteristics test system for six-unit cascaded inverter has been built with the LabVIEW virtual instrument software platform and the ADLINK PCI 9846 high speed digitizer for testing and analyzing the effects of three different troubleshooting measures, including quality benchmarks of amplitude, frequency, total harmonic content, and phases of the three-phase voltage. The optimized neutral point shift with partial zero sequence voltage injection troubleshooting method proves a better troubleshooting mechanism for cascaded inverters as it gives the maximum system output and improves fault tolerance.


Related ADLINK Links:
  • More about ADLINK Digitizers
  • More about PCI-9816/9826/9846
Automatic Solar Cell Test Apparatus with Simultaneous-Sampling DAQ Modules List Application of High-speed Digital Instruments in Testing Firework Products
About ADLINK
Mission & Vision
ADLINK Sustainability
Investor Relations
News & Events
Careers
Contact Us
Ask an Expert
Worldwide Offices
Where to Buy
Support
Partner Center
eRMA Service
ADLINK DDS Support
  • Stay Connected
  •                
Subscribe ADLINK Newsletter
Privacy Policy
Cookie Policy
Site Map
About UsWorldwide OfficesSupport
  •    
  •    
  •    
  •    
Copyright © 2025 ADLINK Technology Inc. All Rights Reserved.
Email:service@adlinktech.com