The Experts below are selected from a list of 324 Experts worldwide ranked by ideXlab platform
Randy Jost - One of the best experts on this subject based on the ideXlab platform.
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T11 — Introduction to Modern Radar transmitters
2014 IEEE Radar Conference, 2014Co-Authors: Lawrence Cohen, Randy JostAbstract:This tutorial on Radar transmitters will address a broad range of issues including system-level design, vacuum-tube technologies and supporting hardware (such as power supplies, exciters, and modulators), solid-state device technologies, and related spectrum issues facing transmitter designers. The emphasis will be on design issues associated with Modern approaches, to include the impact of software defined radio technology and adaptive Radar systems that mitigate RFI/EMI problems in a congested EM environment. System level design topics will include the topology of the transmitter as well as the individual components comprising the topology. An important part of this discussion is that the design must match the intended environment, as different design parameters will be emphasized for airborne vs. ship-based vs. ground Radar systems. Additionally, the specific application will have an impact on design parameters. Thus, a Radar transmitter for a through-the wall system will be very different from one used to carry out meteorological data collection, or one used for a space-based system. Finally, for optimum system operation, the transmitter must be matched to the receiver.
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t11 introduction to Modern Radar transmitters
IEEE Radar Conference, 2014Co-Authors: Lawrence Cohen, Randy JostAbstract:This tutorial on Radar transmitters will address a broad range of issues including system-level design, vacuum-tube technologies and supporting hardware (such as power supplies, exciters, and modulators), solid-state device technologies, and related spectrum issues facing transmitter designers. The emphasis will be on design issues associated with Modern approaches, to include the impact of software defined radio technology and adaptive Radar systems that mitigate RFI/EMI problems in a congested EM environment. System level design topics will include the topology of the transmitter as well as the individual components comprising the topology. An important part of this discussion is that the design must match the intended environment, as different design parameters will be emphasized for airborne vs. ship-based vs. ground Radar systems. Additionally, the specific application will have an impact on design parameters. Thus, a Radar transmitter for a through-the wall system will be very different from one used to carry out meteorological data collection, or one used for a space-based system. Finally, for optimum system operation, the transmitter must be matched to the receiver.
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T11 — Introduction to Modern Radar transmitters
2014 IEEE Radar Conference, 2014Co-Authors: Lawrence Cohen, Randy JostAbstract:This tutorial on Radar transmitters will address a broad range of issues including system-level design, vacuum-tube technologies and supporting hardware (such as power supplies, exciters, and modulators), solid-state device technologies, and related spectrum issues facing transmitter designers. The emphasis will be on design issues associated with Modern approaches, to include the impact of software defined radio technology and adaptive Radar systems that mitigate RFI/EMI problems in a congested EM environment. System level design topics will include the topology of the transmitter as well as the individual components comprising the topology. An important part of this discussion is that the design must match the intended environment, as different design parameters will be emphasized for airborne vs. ship-based vs. ground Radar systems. Additionally, the specific application will have an impact on design parameters. Thus, a Radar transmitter for a through-the wall system will be very different from one used to carry out meteorological data collection, or one used for a space-based system. Finally, for optimum system operation, the transmitter must be matched to the receiver.
Libo Huang - One of the best experts on this subject based on the ideXlab platform.
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Target Detection and Tracking Algorithm Simulation for Automotive Millimeterwave Radar Based on Systematic Softeware-based Radar System
2018 IEEE International Symposium on Antennas and Propagation & USNC URSI National Radio Science Meeting, 2018Co-Authors: Huanlei Chen, Mei Song Tong, Libo HuangAbstract:With the increasing complexity of Modern Radar system and the increasing number of devices used in the Radar system, it would be highly desirable to model the complete Radar system including hardware and software by a single tool. This paper presents a novel software-based simulation method for Modern Radar system which here is automotive Radar application. The method provides target detection and tracking algorithm simulator and the simulation results are compared with the measurement results.
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A systematic software-based Radar system simulation method
2017 IEEE International Symposium on Antennas and Propagation & USNC URSI National Radio Science Meeting, 2017Co-Authors: Huanlei Chen, Mei Song Tong, Libo HuangAbstract:With the increasing complexity of Modern Radar system and the increasing number of devices used in the Radar system, it would be highly desirable to model the complete Radar system including hardware and software by a single tool. This paper presents a novel software-based simulation method for Modern Radar system which here is automotive Radar application. Various functions of automotive Radar, like target speed, distance and azimuth and elevation angle detection, are simulated in test case and the simulation results are compared with the measurement results.
Liu Guo - One of the best experts on this subject based on the ideXlab platform.
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Radar receiver protection techniques: the state of the arts
Jounal of Xidian University, 2001Co-Authors: Liu GuoAbstract:The developing history and status of the Radar receiver protection techniques are discussed. The characteristics and applications fields of several Radar receiver protection techniques being used in the Modern Radar system are analyzed in detail. The new demand of military Radar receiver protection technique under the technical condition of modrn electronic warfare is also given.
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Review of Development of Radar Receiver Protection Techniques
Modern Radar, 2001Co-Authors: Liu GuoAbstract:The developing history and current state of Radar receiver protection techniques are discussed in this paper. The features and applicable fields of several Radar receiver protection techniques being used in various Modern Radar systems are analyzed in detail, and new demands for military Radar receiver protection techniques under the technical condition of Modern electronic warfare are given.
Lawrence Cohen - One of the best experts on this subject based on the ideXlab platform.
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T11 — Introduction to Modern Radar transmitters
2014 IEEE Radar Conference, 2014Co-Authors: Lawrence Cohen, Randy JostAbstract:This tutorial on Radar transmitters will address a broad range of issues including system-level design, vacuum-tube technologies and supporting hardware (such as power supplies, exciters, and modulators), solid-state device technologies, and related spectrum issues facing transmitter designers. The emphasis will be on design issues associated with Modern approaches, to include the impact of software defined radio technology and adaptive Radar systems that mitigate RFI/EMI problems in a congested EM environment. System level design topics will include the topology of the transmitter as well as the individual components comprising the topology. An important part of this discussion is that the design must match the intended environment, as different design parameters will be emphasized for airborne vs. ship-based vs. ground Radar systems. Additionally, the specific application will have an impact on design parameters. Thus, a Radar transmitter for a through-the wall system will be very different from one used to carry out meteorological data collection, or one used for a space-based system. Finally, for optimum system operation, the transmitter must be matched to the receiver.
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t11 introduction to Modern Radar transmitters
IEEE Radar Conference, 2014Co-Authors: Lawrence Cohen, Randy JostAbstract:This tutorial on Radar transmitters will address a broad range of issues including system-level design, vacuum-tube technologies and supporting hardware (such as power supplies, exciters, and modulators), solid-state device technologies, and related spectrum issues facing transmitter designers. The emphasis will be on design issues associated with Modern approaches, to include the impact of software defined radio technology and adaptive Radar systems that mitigate RFI/EMI problems in a congested EM environment. System level design topics will include the topology of the transmitter as well as the individual components comprising the topology. An important part of this discussion is that the design must match the intended environment, as different design parameters will be emphasized for airborne vs. ship-based vs. ground Radar systems. Additionally, the specific application will have an impact on design parameters. Thus, a Radar transmitter for a through-the wall system will be very different from one used to carry out meteorological data collection, or one used for a space-based system. Finally, for optimum system operation, the transmitter must be matched to the receiver.
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T11 — Introduction to Modern Radar transmitters
2014 IEEE Radar Conference, 2014Co-Authors: Lawrence Cohen, Randy JostAbstract:This tutorial on Radar transmitters will address a broad range of issues including system-level design, vacuum-tube technologies and supporting hardware (such as power supplies, exciters, and modulators), solid-state device technologies, and related spectrum issues facing transmitter designers. The emphasis will be on design issues associated with Modern approaches, to include the impact of software defined radio technology and adaptive Radar systems that mitigate RFI/EMI problems in a congested EM environment. System level design topics will include the topology of the transmitter as well as the individual components comprising the topology. An important part of this discussion is that the design must match the intended environment, as different design parameters will be emphasized for airborne vs. ship-based vs. ground Radar systems. Additionally, the specific application will have an impact on design parameters. Thus, a Radar transmitter for a through-the wall system will be very different from one used to carry out meteorological data collection, or one used for a space-based system. Finally, for optimum system operation, the transmitter must be matched to the receiver.
Huanlei Chen - One of the best experts on this subject based on the ideXlab platform.
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Target Detection and Tracking Algorithm Simulation for Automotive Millimeterwave Radar Based on Systematic Softeware-based Radar System
2018 IEEE International Symposium on Antennas and Propagation & USNC URSI National Radio Science Meeting, 2018Co-Authors: Huanlei Chen, Mei Song Tong, Libo HuangAbstract:With the increasing complexity of Modern Radar system and the increasing number of devices used in the Radar system, it would be highly desirable to model the complete Radar system including hardware and software by a single tool. This paper presents a novel software-based simulation method for Modern Radar system which here is automotive Radar application. The method provides target detection and tracking algorithm simulator and the simulation results are compared with the measurement results.
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A systematic software-based Radar system simulation method
2017 IEEE International Symposium on Antennas and Propagation & USNC URSI National Radio Science Meeting, 2017Co-Authors: Huanlei Chen, Mei Song Tong, Libo HuangAbstract:With the increasing complexity of Modern Radar system and the increasing number of devices used in the Radar system, it would be highly desirable to model the complete Radar system including hardware and software by a single tool. This paper presents a novel software-based simulation method for Modern Radar system which here is automotive Radar application. Various functions of automotive Radar, like target speed, distance and azimuth and elevation angle detection, are simulated in test case and the simulation results are compared with the measurement results.