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Radar Simulation 3.0
RADSIM
RADSIM provides the fidelity and flexibility of a phototexture-based digital radar landmass simulation (DRLMS) system. It uses Leidos-developed core radar simulation technology and can produce a very high-fidelity geo-specific or generic, simulated real-time synthetic aperture radar (SAR), Doppler beam sharpening (DBS), and real beam imagery to less than one-meter resolution.
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Radar・Sensor Simulation Framework
COSMOsim
Millimeter Wave Radar simulator and LIDAR (Laser Imaging Detection And Ranging) simulator for Automotive sensor simulations, and also can provide 3DCG MAP for specific radar which has millimeter accuracy. Now we can only provide AMMWR and ALR to the following COSMOsim Framework. This simulator enables automotive manufacturers to simulate a driving situation by sensor-based modelling, check the recognition and control of autonomous driving, and verify the sensor-mounting positions on vehicles efficiently, which eliminates the need for test driving with real vehicles.
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Simulators/Threat Emitters
Antennas for RADAR test, simulation and training are designed for integration into complete threat RADAR simulators for use on combat training and test ranges or in simulators for training and evaluation of RADAR operators, aircrews, air-traffic-control or weather radar applications. All antennas for RADAR simulators have high RF power handling capabilities and generally use pressurized transmission lines. Dual-band, single aperture antennas and a cluster of separate antennas mounted to a single pedestal are ideally suited for RADAR simulators in mobile, fixed, shipboard and airborne environments.
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Radar Altimeter Test Set
Core Technology
Eastern OptX core technology enables the conversion of microwave signals to optical signals (E/O), time delaying this signal then reconverting the light back to original microwave signal (O/E) with superior fidelity over traditional time delay methods. Products include Radar Target Simulation, Radar Altimeter Testing, Channel Simulation (Air Interface) and Multipath Creation.
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Arbitrary Waveform Generators
Helps you to generate with confidence waveforms of almost any imaginable shape: complex signals like digital modulations, RF stimuli for functional and performance tests, radar simulation, optical communication and electronic warfare can be created through an easy to use interface.
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Doppler Radar Target Simulators
Automotive radar sensors play a vital role in the current development of autonomous driving. Their ability to detect objects even under adverse conditions makes them indispensable for environment-sensing tasks in autonomous vehicles. As their functional operation must be validated in-place, a fully integrated test system is required. Radar Target Simulators (RTS) are capable of executing end-of-line, over-the-air validation tests by looping back a received and afterward modified radar signal and have been incorporated into existing Vehicle-in-the-Loop (ViL) test beds before. However, the currently available ViL test beds and the RTS systems that they consist of lack the ability to generate authentic radar echoes with respect to their complexity. The paper at hand reviews the current development stage of the research as well as commercial ViL and RTS systems. Furthermore, the concept and implementation of a new test setup for the rapid prototyping and validation of ADAS functions is presented. This represents the first-ever integrated radar validation test system to comprise multiple angle-resolved radar target channels, each capable of generating multiple radar echoes. A measurement campaign that supports this claim has been conducted.
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Radar Target Generator
Series 1100
The Eastern OptX Series 1100 Radar Target Simulator is a true propagation path replicator. The Series 1100 receives the signal transmitted from a radar system and adds the round-trip propagation delay associated with the target distance. That signal is then output to the radar receiver. The radar I/O may be connected directly to the Series 1100 or detected and transmitted using user specified antenna. For a moving target the system will add the appropriate Doppler shift associated with the target speed and radar frequency. The Series 1100 is broad band with ranges up to 40 GHz and with a dynamic range of over 100 dB.
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Signal Generator Software
The software solutions for the class-leading signal generators from Rohde & Schwarz support various demanding applications. These include powerful radar simulation, the generation of digital I/Q signals supporting various radio standards as well as software tailored for multi-channel vector signal generator setups.
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T400 Radar Emulation Simulator
Kratos Defense & Security Solutions, Inc.
The Radar Emulation Simulator provides a cost-effective solution for simulating targets and channel effects in an RF environment. The system can be controlled via a standalone graphical user interface for simplified scenario applications, a dedicated real-time interface, or remotely via the Ethernet interface.
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Radar Target Simulator
E8707A
Rapid developments in the autonomous vehicle and demand for greater safety features is fueling the need for more sensitive and accurate automotive radar technology being deployed in advanced driver assistance systems (ADAS). With its rich expertise in radar test technology, Keysight now offers the E8707A radar target simulator to help automotive electronics manufacturers confidently simulate radar targets in various realistic scenarios.
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Radar Simulation Software
Pulse Sequencer
R&S®Pulse Sequencer software together with a vector signal generator from Rohde & Schwarz or just as software provides a compelling radar signal generation solution to engineers and technicians responsible for testing radar receivers. The solution is in line with the trend of testing more in the lab rather than expensive field testing. Co-engineered with the industry, the solution supports all relevant modern radar scenario test cases and can account for real-world environments. It uses commercially available R&S®Pulse Sequencer PC software and off-the-shelf Rohde & Schwarz vector signal generators.
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Radar Simulator
SPx
SPx Radar Simulator is a Windows-based application that generates simulated radar video data, along with any combination of tracks, AIS, navigation and secondary radar. The data may be output in network format (including ASTERIX for radar video and tracks), or as radar signals (video, trigger, ACP/ARP) with the HPx-300 radar output card.
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PXI RTD Simulator Module 6-Channel PT100
40-262-101
The 40-262 is a 3U PXI module range that supports 6 (in one slot), 12 or 18 (in two slots) channels of RTD simulation. Based on the 40-260 design principles the module can provide a setting resolution of <8mΩ (PT100) or <90mΩ (PT1000) and a resistance accuracy of better than 0.1% on all channels. Each simulation channel is able to provide a short or open circuit setting to simulate faulty wiring connections to a sensor. Calibration or verification of each resistor channel can be verified by using the calibration port connected to a high performance DMM and a supplied software package.
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PCI RTD Simulator Card 6-Channel PT100
50-262-101
This RTD Simulator is a PCI card that supports 6 channels of RTD simulation. The card provides a setting resolution of <8mΩ (also available in <90mΩ - PT1000version) and a resistance accuracy of better than 0.1% on all channels. Each simulation channel is able to provide a short or open circuit setting to simulate faulty wiring connections to a sensor. Calibration or verification of each resistor channel can be verified by using the calibration port connected to a high performance DMM and a supplied software package.
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Single Stream STANAG3910/EFEX Test & Simulation Module For 3U PXI Express/Compact PCI Express
ACE3910-3U-1
STANAG3910/EFEX Test and Simulation module for CPCIe/PXIe (3U) with 1 Dual Redundant HS/LS channel. Onboard Fibre Optic Front End (FOFE). Easily select between EFAbus and EFEX modes for Tranche II Eurofighter.
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Solar Array Simulator DC Module, 130V, 5A, 600W
E4362A
The Keysight E4362A is a 600W solar array simulator DC power module that simulates the output characteristics of a solar array. The E4362A is primarily a current source with very low output capacitance. It offers fast I-V curve changes allowing you to accurately simulate the output of different solar arrays under various environmental conditions (ex. temperature, age, eclipse, spin etc.). The E4360 gives you the flexibility to operate it in two ways:
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PXI RTD Simulator Module, 24 Channel, PT500
40-263-002
The 40-263-002 is a 24-channel PT500 RTD Simulator. The 40-263 range is a cost effective method of simulating PT100, PT500 or PT1000 RTDs. It supports 4, 8, 12, 16, 20 or 24 channels in one or two PXI slots. Also, channels are able to be set as short or open circuit to simulate faulty wiring to a sensor.
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VXI Synchro/Resolver Simulation & Measurement
65CS4
NAI’s 65CS4 is a Synchro/Resolver Simulation & Measurement Instrument on a single-slot VXI board. The board incorporates up to four Synchro/Resolver measurement channels and up to four instrument-grade Synchro/Resolver simulation channels, or up to eight embedded grade Synchro/Resolver simulation channels that can be used independently and/or simultaneously.
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Single Stream STANAG3910/EFEX Test And Simulation Module for PCIe
APEX3910
STANAG3910/EFEX Test and Simulation module for PCIe with 1 dual redundant HS/LS channel and onboardFibre Optic Front End (FOFE). Easily select between EFAbus and EFEX modes for Tranche II Eurofighter. The APEX3910 is a functional replacementfor model APE3910.
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PXI/PXIe LVDT/RVDT Simulator Module, 4-Banks
43-670-101-AABBCC
The 41/43-670-101 is ideal for the simulation of variable differential transformers (VDT), both linear (LVDT) and rotary (RVDT) types. It has four banks, each capable of simulating the output of a single 5 or 6-wire VDT or resolver, or dual 4-wire utilizing a shared excitation signal.
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VXI 12-Channel, 3-Wire LVDT/RVDT Simulation
65DL2
NAI’s 65DL2 is a 12-channel, 3-wire, LVDT/RVDT Simulation Instrument on a VXI board. This single-slot, message-based board features up to 12 stimulus channels of 3-wire LVDT/RVDT, wraparound self-test, and onboard programmable excitation supply. The board is uniquely versatile, as each excitation input and output voltage is programmable. In addition, each channel can be programmed to be controlled by an external DC voltage. A replacement for the 5410C-83, the 65DL2 is ideally suited for defense, commercial aerospace, and industrial applications.
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GNSS Signal Simulator
sUTP 5017
With the increasingly complex RF landscape, expectations for validation and functional testing of GNSS equipment are also rising. A large number of different navigation signals need to be reproduced under conditions that are as realistic as possible. The additional generation and injection of interference into the GNSS signals are supposed to simulate the real environment.
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PXI Millivolt Thermocouple Simulator Module - 32 Channel
41-760-001
This series of PXI Thermocouple Simulator Modules is available in a choice of 32, 24, 16 or 8 channels—each channel providing a low-voltage output across two connector pins capable of providing ±20mV with 0.7µV resolution, ±50mV with 1.7µV resolution and ±100mV with 3.3µV resolution, covering most thermocouple types.
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PXI/PXIe LVDT/RVDT Simulator Module, 2-Banks
43-670-103-AABBCC
The 41/43-670-103 is ideal for the simulation of variable differential transformers (VDT), both linear (LVDT) and rotary (RVDT) types. It has two banks, each capable of simulating the output of a single 5 or 6-wire VDT or resolver, or dual 4-wire utilizing a shared excitation signal.
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Solar Array Simulator
Among other things, solar array simulators are required for testing satellite power supplies. An SAS (Solar Array Simulator), consisting of an interconnection of several Solar Array Simulator modules, maps the solar panels and displays the individual strings connected in parallel. Optionally, the individual SAS modules are monitored by a Second Level Protection, so that the test object is not damaged in case of errors with the voltage sources. Additional circuitry is implemented via project-specific test modules. The signal path to the DUT can be separated, e.g. for dynamic current measurements.The Keysight Solar Array Simulators used were specially developed for satellite applications and cover the significantly higher requirements regarding the control speed of MPP tracking compared to terrestrial applications.
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PXI RTD Simulator Module, 4 Channel, PT500
40-263-502
The 40-263-502 is a 4-channel PT500 RTD Simulator. The 40-263 range is a cost effective method of simulating PT100, PT500 or PT1000 RTDs. It supports 4, 8, 12, 16, 20 or 24 channels in one or two PXI slots. Also, channels are able to be set as short or open circuit to simulate faulty wiring to a sensor.
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VDT/Resolver Simulation Module for SLSC
Bloomy's VDT/Resolver Simulation Module offers eight channels of variable differential transformer (VDT) sensor simulation at an unmatched price point. Its highly-flexible nature allows each channel to be configured independently for simulation of a linear variable differential transformer (LVDT), a rotary variable differential transformer (RVDT), or a resolver. Versatile, separate E1 and E2 returns allow each channel to be connected in a 4-, 5- or 6-wire configuration. The included VeriStand SLSC driver also allows each channel to simulate two 4-wire sensors where shared excitation is acceptable.
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STANAG3910 Test And Simulation Module – Rafale – For PCI Express
APEX3910-EN
Single Stream STANAG3910 Test and Simulation module – Rafale – for PCI Express with 1 dual redundant HS/LS channel and onboard Electrical Front End (EFE). The APEX3910-EN is a functional replacement for APE3910-EN.
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PXI RTD Simulator Module, 12 Channel, PT1000
40-263-303
The 40-263-303 is a 12-channel PT1000 RTD Simulator. The 40-263 range is a cost effective method of simulating PT100, PT500 or PT1000 RTDs. It supports 4, 8, 12, 16, 20 or 24 channels in one or two PXI slots. Also, channels are able to be set as short or open circuit to simulate faulty wiring to a sensor.
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LED Load Simulator
63110A/ 63113A/63115A
As shown on the V-I curve in figure 1, the LED has a forward voltage VF and a operating resistance (Rd). When using a resistor as loading, the V-I curve of the resistor is not able to simulate the V-I curve of the LED as shown in blue on figure 1. This may cause the LED driver to not start up due to the difference in V-I characteristic between the resistors and the LEDs. When using Electronic Loads, the CR and CV mode settings are set for when the LED is under stable operation and therefore, is unable to simulate turn on or PWM brightness control characteristics. This may cause the LED driver to function improperly or trigger it’s protection circuits. These testing requirements can be achieved when using a LEDs as a load; however, issues regarding the LED aging as well as different LED drivers may require different types of LEDs or a number of LEDs. This makes it inconvenient for mass production testing.





























