WIRELESS COMMUNICATION SYSTEM
PROBLEM TO BE SOLVED: To provide a wireless communication system wherein a mobile wireless station can make transmission without noise even when a plurality of base stations are installed to extend the service area of the system. SOLUTION: Transmission and reception frequencies different from each o...
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creator | KONDO HIROSHI FUKUZUKA KOKEI TAIKO SHINICHI |
description | PROBLEM TO BE SOLVED: To provide a wireless communication system wherein a mobile wireless station can make transmission without noise even when a plurality of base stations are installed to extend the service area of the system. SOLUTION: Transmission and reception frequencies different from each other are assigned to base stations 1 and a transmission circuit 108 transmits a radio wave of respective transmission frequencies periodically. A reception circuit 202 of a mobile wireless station 2 periodically receives the radio wave of the transmission frequency of each base station 1, an RSSI circuit detects the electric field strength of the received signal and the signals in orders of stronger electric field strength are ranked and stored. Then the transmission/reception is carried out by using the transmission/reception frequency of the base station 1 whose electric field strength is strongest at the transmission/reception with the base station 1. COPYRIGHT: (C)2005,JPO&NCIPI |
format | Patent |
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SOLUTION: Transmission and reception frequencies different from each other are assigned to base stations 1 and a transmission circuit 108 transmits a radio wave of respective transmission frequencies periodically. A reception circuit 202 of a mobile wireless station 2 periodically receives the radio wave of the transmission frequency of each base station 1, an RSSI circuit detects the electric field strength of the received signal and the signals in orders of stronger electric field strength are ranked and stored. Then the transmission/reception is carried out by using the transmission/reception frequency of the base station 1 whose electric field strength is strongest at the transmission/reception with the base station 1. 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SOLUTION: Transmission and reception frequencies different from each other are assigned to base stations 1 and a transmission circuit 108 transmits a radio wave of respective transmission frequencies periodically. A reception circuit 202 of a mobile wireless station 2 periodically receives the radio wave of the transmission frequency of each base station 1, an RSSI circuit detects the electric field strength of the received signal and the signals in orders of stronger electric field strength are ranked and stored. Then the transmission/reception is carried out by using the transmission/reception frequency of the base station 1 whose electric field strength is strongest at the transmission/reception with the base station 1. 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SOLUTION: Transmission and reception frequencies different from each other are assigned to base stations 1 and a transmission circuit 108 transmits a radio wave of respective transmission frequencies periodically. A reception circuit 202 of a mobile wireless station 2 periodically receives the radio wave of the transmission frequency of each base station 1, an RSSI circuit detects the electric field strength of the received signal and the signals in orders of stronger electric field strength are ranked and stored. Then the transmission/reception is carried out by using the transmission/reception frequency of the base station 1 whose electric field strength is strongest at the transmission/reception with the base station 1. COPYRIGHT: (C)2005,JPO&NCIPI</abstract><edition>7</edition><oa>free_for_read</oa></addata></record> |
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subjects | ELECTRIC COMMUNICATION TECHNIQUE ELECTRICITY MULTIPLEX COMMUNICATION WIRELESS COMMUNICATIONS NETWORKS |
title | WIRELESS COMMUNICATION SYSTEM |
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