Abstract

본 논문에서는 전파 잡음에 노출된 무선 랜의 데이터 전송 속도 저하(低下)가 일어나는 원인과 주파수 이격(離隔)에 따른 간섭 정도가 달라지는 이유를 설명하였고, 또한 현저한 전송 속도 저하를 일으키는 간섭파의 전계 강도 수치를 측정하였다. 연구에 사용된 두 대의 무선 랜 및 한 대의 AP(Access Point)가 무선 통신망을 형성하였다. 사용된 전파 간섭의 종류는 동일 채널 간섭 및 인접 채널 간섭이었고, 각 경우에 대한 전계 강도 임계 수치를 도출하였다. 두 경우의 전파 간섭에 대한 전계 강도 임계 수치를 조사한 결과, 그 값은 54 dBuV/m @3 m이었고, 이 수치는 현행 국내 기준치인 30.9 dBuV/m @3 m보다 높은 값이었다. 이는 802.11b 무선 랜에 관한 한은, 국내의 소출력 무선기기 규정치는 23.1 dB 만큼 과도하게 설정되었음을 의미하는 것이다. In this paper, we investigate the cause of throughput degradation on the wireless local area network(WLAN) and the reason of interference level change attributed to the spanned frequency in the presence of electromagnetic interference. We also measured and quantified the electric field strength of interference which yields the abrupt change of the throughput. Two units of WLAN and one unit of AP(Access Point) are configured to maintain the radio link. As the sources of interference, both the co-channel and adjacent-channel interference are considered and the critical values of electric field are provided for each case. Our experimental observations show that the signal strength generated from these interference sources is at most less than 54 dBuV/m @3 m in order to coexist between WLANs and other low power radio devices without any noticeable throughput decreases. Based on our empirical results, as far as 802.11b WLAN is concerned, we believe that the current domestic limit of the signal strength for an extremely low power radio device, 30.9 dBuV/m @3 m, can be increased as much as 23.1 dB.

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