Energy-efficient indoor localization system and a method of reducing power consumption of a radio badge in the indoor localization system
First Claim
1. A method of reducing power consumption of a radio badge in a localization system, the radio badge being carried by a tracked target and being provided with a pedometer for detecting a footstep count of the tracked target, said method comprising:
- (a) estimating a velocity of the radio badge according to the footstep count detected by the pedometer;
(b) calculating a sleep time from the velocity of the radio badge; and
(c) controlling the radio badge to discontinue emitting radio signals during the sleep time;
wherein, in step (b), the sleep time is calculated using the following equation;
sleep time=(error tolerance−
estimation error)/velocity−
processing and network delay,where error tolerance, estimation error, and processing and network delay are given application-specific or system parameters, and velocity is the velocity estimated in step (a).
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Abstract
A method of reducing power consumption of a radio badge in a localization system is disclosed, in which the radio badge is carried by a tracked target and is provided with a pedometer for detecting a footstep count of the tracked target. The method includes: estimating a velocity of the radio badge according to the footstep count detected by the pedometer; calculating a sleep time from the velocity of the radio badge; and controlling the radio badge to discontinue emitting radio signals during the sleep time. An indoor localization system that performs the method is also disclosed.
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Citations
11 Claims
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1. A method of reducing power consumption of a radio badge in a localization system, the radio badge being carried by a tracked target and being provided with a pedometer for detecting a footstep count of the tracked target, said method comprising:
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(a) estimating a velocity of the radio badge according to the footstep count detected by the pedometer; (b) calculating a sleep time from the velocity of the radio badge; and (c) controlling the radio badge to discontinue emitting radio signals during the sleep time; wherein, in step (b), the sleep time is calculated using the following equation;
sleep time=(error tolerance−
estimation error)/velocity−
processing and network delay,where error tolerance, estimation error, and processing and network delay are given application-specific or system parameters, and velocity is the velocity estimated in step (a). - View Dependent Claims (2, 3, 4, 5)
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6. An indoor localization system comprising:
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a radio badge adapted to be carried by a tracked target and capable of emitting radio signals; a pedometer disposed on said radio badge, and detecting and outputting a footstep count of the tracked target; a mobility estimator for estimating a velocity of said radio badge according to the footstep count outputted by said pedometer; and a sampling rate adaptor for calculating a sleep time from the velocity of said radio badge, and for outputting a sleep time signal corresponding to the sleep time; wherein said radio badge receives the sleep time signal and responds thereto by discontinuing emitting of the radio signals during the sleep time and wherein the sleep time is calculated by said sampling rate adaptor using the following equation;
sleep time=(error tolerance−
estimation error)/velocity−
processing and network delay,where error tolerance, estimation error, and processing and network delay are given application-specific or system parameters, and velocity is the velocity estimated by said mobility estimator. - View Dependent Claims (7, 8, 9, 10, 11)
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Specification