• Title/Summary/Keyword: HAPs

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Analysis on the Effects of Interference from HAPS Ground Stations to P-MP FWA System (HAPS 지상국에서 P-MP FWA 시스템으로의 간섭 영향 분석)

  • Ham Hyung-Il;Kang Young-Heung
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.17 no.2 s.105
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    • pp.152-157
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    • 2006
  • In this paper, we have analyzed the effects of interference from HAPS ground stations to P-MP FWA base station and to P-MP FWA terminal station using more detail parameters such as a new interference model, a realistic HAPS scenario, practical antenna patterns for both the HAPS system and FWA systems. The analysis results show that, in the case of interference from HAPS GSs into a P-MP BS, compatibility of the two systems can be obtained by using a sectored BS antenna with the boresight directed away from the nadir. However, in the case of interference from HAPS GSs into a P-MP TS, the two systems cannot operate effectively in the same band unless the separation distance is guranteed and/or some form of interference mitigation technique is employed such as dynamic channel allocation.

Estimation of the sharing criteria between HAPS System and Cellular IMT-2000 system (HAPS 시스템과 셀룰라 IMT-2000 시스템간 주파수 공유 기준 평가)

  • Kim, Bong-Seok;Park, Jong-Min;Ku, Bon-Jun;Ahn, Do-Sub;Kang, Young-Heung
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.27 no.8B
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    • pp.819-825
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    • 2002
  • Resolution 221 requests the ITU-R to conduct studies, as a matter of urgency, on the feasibility of utilizing HAPS system as a base station to provide IMT-2000 services. And HAPS base stations should not cause harmful interference to the cellular IMT-2000 services. To study on the interference between HAPS system and cellular system is divided into two cases. One is the interference into HAPS system from the cellular system and the other is the interference into the cellular system from HAPS system. Since the former case has been already studied[1]. this paper describes the interference the interference to the noise power ration(I/N) with various parameters, such as the transmitting power, the number of users per cell, maximum antenna gain and the multibeam cell radius of HAPS. With the proposed estimation, we can determine the optimum values of various parameters in HAPS IMT-2000 system.

A Proposal of the Maximum Allowable Off-axis Level for HAPS Ground Station in 47/48GHz Bands (47/48GHz 대역의 HAPS 지상국을 위한 최대 허용 off-axis 레벨 제안)

  • Choi Mun-Hwan;Kang Young-Heung;Park Jong-Min;Ku Bon-Jun;Ahn Do-Seob
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2006.05a
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    • pp.611-614
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    • 2006
  • Resolution 122 requires to study power limitation applicable for HAPS ground stations to facilitate sharing with space station receivers in 47/48GHz bands. ITU-R Recommendation 1481-1 recommends to improve the side lobe characteristics of HAPS ground station antenna for sharing between FSS system and HAPS system. Thus, in this paper, we propose maximum allowable off-axis e.i.r.p. level of HAPS ground station antennas by considering power limitation to HAPS ground station in Resolution 122 in order to reduce unfeasible separate distance between HAPS and GSO FSS service coverage and improve the side lobe characteristics of HAPS ground station antennas in Recommendation SF.1481-1.

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Analysis on the Interference Effects of Radio-Relay Stations into HAPS System (무선중계국이 HAPS 시스템에 미치는 간섭 영향 분석)

  • Kim, Bong-Seok;Park, Sang-Jun;Ham, Hyung-Il;Kang, Young-Heung
    • Journal of Advanced Navigation Technology
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    • v.6 no.1
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    • pp.10-16
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    • 2002
  • High altitude platform station(HAPS) is being developed actively in some countries as well as Korea. At the same time Resolution 734 was adopted in WRC-2000 to study the sharing of HAPS into the existing fixed services in the bands above 3GHz. As one of the sharing studies, interferences between HAPS and radio-relay stations should be analyzed by dividing into two cases, the one is the interference effects of HAPS system into radio-relay stations and on the contrary, the other that of radio-relay stations into HAPS system. Since the former case had been already studied, only the latter case will be focused on this paper. Analysis result shows that the coordination distance must be needed above 100 km when the trendline of radio-relay is located vertical to HAPS service area and the transmitting power is -50 dBW/MHz.

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Interference Analysis of Radio-Relay Stations Affected by HAPS System for Frequency Sharing (주파수 공유를 위한 HAPS 시스템이 무선 중계국에 미치는 간섭 영향 분석)

  • 박종민;구본준;안도섭;김봉석;강영흥
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.27 no.7B
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    • pp.719-726
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    • 2002
  • In WRC-2000, Resolution 734 was adopted to study the use of high altitude platform station(HAPS) operating in the bands above 30GHz. Therefore, frequency sharing feasibility between a new HAPS systems and an existing terrestrial fixed-service(FS) system should be analyzed primarily. In this paper, interference effects from the HAPS system into the radio-relay station are analyzed in terms of two cases; one is the interference distribution from the power-flux density(PFD) of HAPS airships, and the other the interference power from the ground stations. In conclusion, the new PFD criteria different from the exiting satellite system should be required, and the coordinated distance between the HAPS nadir and the radio-relay station should be 60km ∼ 253km for P$\sub$HG/ = -50dBW/MHz of transmitting power spectral density to share the new HAPS system into the existing FS system.

The Analysis on the Effects of Interference between HAPS and NGSO system in the Service Link (HAPS와 NGSO 시스템의 Service Link상의 간섭영향 분석)

  • 함형일;김규환;양의장;강영훙
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2002.11a
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    • pp.151-155
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    • 2002
  • In this paper, interference effects between NGSO and HAPS analyze into two cases. One is HAPS interference effect into NGSO, another is NGSO interference effect into HAPS. First, same case of number of users for LEO and HAPS interference received to LEO mobile station are over the -8.82dB. But in case of 1/10 and 1/100, I/N values are lowest 16.9dB and -20.3dB respectively. In case of interference received to HPAS mobile station, as LEO is 87$^{\circ}$, if the HAPS and LEO users is same, interference criterion over the 2200 users. but in the case of 1/10 and 1/100 of LEO is HAPS users, we don't know over the interference criterion. In accordance with, for reduce to effects of interference important suitable establishment of transmission power, number of users and cell radius of two system.

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A Proposal of the Maximum Allowable Off-axis e.i.r.p. Level of HAPS Ground Station for Frequency Sharing with 47/48GHz FSS system (47/48GHz FSS 위성 시스템과의 주파수 공유를 위한 HAPS 지상국의 최대 허용 off-axis e.i.r.p. 레벨 제안)

  • Kang, Young-Heung;Choi, Mun-Hwan
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.11 no.3
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    • pp.459-464
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    • 2007
  • Resolution 122 requires to study power limitation applicable for HAPS ground stations to facilitate sharing with space station receivers in 47/48GHz bands. ITU-R Recommendation 1481-1 recommends to improve the side lobe characteristics of HAPS ground station antenna for frequency sharing between FSS system and HAPS system. In this paper, we propose the maximum allowable off-axis e.i.r.p. level of HAPS ground station antennas by considering power limitation to HAPS ground station in Resolution 122, and by improving the side lobe characteristics of HAPS ground station antennas in Recommendation SF.1481-1. The simulation results show that the unfeasible sharing distance between HAPS ground station and FSS earth station can be reduced remarkably, and give the possibility of frequency sharing between two above systems.

The Analysis on the Interference Effects from Airship of HAPS system to Satellite of GSO system in Ka band (Ka 대역에서 HAPS 비행선으로부터 GSO 위성으로의 간섭 영향 분석)

  • 강영흥;최문환
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.29 no.5B
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    • pp.476-481
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    • 2004
  • Since the bands 27.5 ∼ 28,350㎓ and 31.0 ~ 31.30Hz for existing fixed-satellite service were allocated to tile HAPS system in WRC-2000, the analysis on the interference effects between the existing FSS/GSO system and FS/HAPS system should be needed. To do study on the interference effects between above two systems, we can consider two frequency operational conditions, one is the Reverse mode, the other is Forward mode. In this paper, we analyzed the interference effects from airship of HAPS systems to satellite of the GSO system in the case of Reverse condition mode due to the C/I criterion, the latitude of HAPS and transmitting power of HAPS airship. In future, these results will be vital data to share between HAPS and GSO systems.

Analysis on the Interference from HAPS Airship into P-MP FWA System (HAPS 비행선에서 P-MP FWA 시스템으로의 간섭 분석)

  • Choi, Mun-Hwan;Ham, Hyoung-Il;Kang, Young-Heung
    • Journal of Advanced Navigation Technology
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    • v.9 no.2
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    • pp.177-184
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    • 2005
  • In this paper, we have analyzed the effects of the interference from HAPS airship stations to P-MP FWA base station and to P-MP FWA terminal station, using more detail parameters such as a new interference model, a realistic HAPS scenario, practical antenna patterns for both HAPS system and FWA system. The analysis results show that, in the case of interference from HAPS AS into the P-MP FWA BS, compatibility between two systems can be obtained by using a sectored BS antenna with the boresight directed away from the nadir. However, in the case of Interference from HAPS AS into the P-MP FWA TS, the two systems cannot operate effectively in the same bands unless the separation distance is guranteed and/or some form of interference mitigation technique is employed such as dynamic channel allocation.

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Analysis on the Interference Effects between HAPS and NGSO Systems in the Feeder Link (HAPS와 NGSO 시스템간의 Feeder Link상의 간섭분석)

  • Kang, Young-Heung;Mun, Seung-Young
    • Journal of Advanced Navigation Technology
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    • v.4 no.2
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    • pp.182-190
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    • 2000
  • In this paper, interference effects between NGSO and HAPS in the feeder link have been simulated and analyzed by means of calculating excess time percent and duration below the ell protection ratio. As the results, in the case of HAPS interference into NGSO, it can be obtained that the lowest C/I values are 20.42dB in 50km and 12.73dB in 20km of HAPS altitudes, respectively. And in the case of NGSO interference into HAPS, it can be obtained that the lowest ell values are 13.94dB and 10.42dB respectively. HAPS system has more interference reception from other systems or effects more interference into other systems as its altitude is lower. Also, the lowest ell values are appeared at difference time with its altitude.

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