Intelligent scent management system with perceptual maintenance control and authorization verification mechanism

TWM687129UActive Publication Date: 2026-09-01陳紹群
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Patent Information

Application Number
TW115204987
Authority / Receiving Office
TW · TW
Patent Type
Utility models
Current Assignee / Owner
Filing Date
2026-06-01
Publication Date
2026-09-01
Estimated Expiration
2036-05-31

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Abstract

This invention presents a smart fragrance management system with a perception-maintaining control and authorization verification mechanism, comprising a fragrance device, a control server, and a perception control engine. The control server issues time-sensitive authorization tokens and determines the range of perceptual control functions that can be executed based on the user's subscription status. The fragrance device verifies the validity of the authorization tokens for control commands and outputs the scent upon successful verification. The perception control engine generates a discontinuous stimulus sequence based on adaptation time parameters, switching the scent output between release and stop segments, and adjusting the duration of each segment according to environmental compensation parameters to accommodate the adsorption characteristics of spatial materials and gas flow characteristics. Through perception threshold control and a closed-loop feedback learning mechanism, the scent output strategy is dynamically adjusted to maintain the user's perception intensity within the effective perception range.
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Claims

1. A smart fragrance management system with a sensing, maintenance, control, and authorization verification mechanism, comprising: a fragrance device (30), including a device identification code storage unit (31) and an authorization token verification unit (32), wherein the authorization token verification unit (32) is used to verify the validity of the authorization token for the received control command, and allows the output of fragrance after the verification is successful; a control server device (20), including a token issuing module (21) and a subscription permission management module (22), wherein the token issuing module (21) is used to issue a time-sensitive authorization token for the control command, and the subscription permission management module (22) is used to determine the range of sensing and control functions that can be executed according to the user's (10) subscription status; and a sensing and control engine (40), including: A discontinuous stimulus sequence generation unit (41) is used to generate a discontinuous stimulus sequence according to an adaptation time parameter (T_adapt), so that the odor output switches between a release segment and a stop segment; and an environmental compensation correction unit (42) is used to adjust the duration of the stop segment according to a first environmental compensation parameter (D1), so that the duration of the stop segment corresponds inversely to (D1), and adjust the duration of the release segment according to a second environmental compensation parameter (D2), so that the duration of the release segment corresponds in positively to (D2), wherein the authorization token issued by the control servo device is provided to the fragrance device for verification, and the perception control engine is used to control the odor output behavior of the fragrance device.

2. The intelligent fragrance management system with sensing, maintenance control, and authorization verification mechanisms as described in claim 1, wherein, The discontinuous stimulation sequence further includes a recovery waiting section, such that the discontinuous stimulation sequence includes the release section, the stop section, and the recovery waiting section.

3. The intelligent fragrance management system with sensing, maintenance control, and authorization verification mechanisms as described in claim 2, wherein, The adaptation time parameter (T_adapt) is adjusted according to user perception feedback to affect the duration of at least one segment of the discontinuous stimulus sequence, and the perception control engine (40) further includes a closed-loop feedback learning module (60), which is used to update the correlation coefficient of the adaptation time parameter (T_adapt) and at least one environmental compensation parameter according to the user perception feedback.

4. The intelligent fragrance management system with sensing, maintenance control, and authorization verification mechanisms as described in claim 1, wherein, The first environmental compensation parameter (D1) has an adsorption coefficient that reflects the adsorption characteristics of the space material.

5. The intelligent fragrance management system with sensing, maintenance control, and authorization verification mechanisms as described in claim 4, wherein, The relationship between the duration of the stop segment and the first environmental compensation parameter (D1) is a monotonically decreasing function. When the first environmental compensation parameter (D1) exceeds a preset threshold, the duration of the stop segment is shortened by 10% to 20%. The duration of the stop segment changes with the first environmental compensation parameter (D1) according to a preset mathematical relationship.

6. The intelligent fragrance management system with sensing, maintenance control, and authorization verification mechanisms as described in claim 1, wherein, The second environmental compensation parameter (D2) has a flow coefficient that reflects the characteristics of space gas flow.

7. The intelligent fragrance management system with sensing, maintenance control, and authorization verification mechanisms as described in claim 6, wherein, The relationship between the duration of the release segment and the second environmental compensation parameter (D2) is a monotonically increasing function. When the second environmental compensation parameter (D2) exceeds a preset threshold, the duration of the release segment is extended by 8% to 15% as compensation. The duration of the release segment changes with the second environmental compensation parameter (D2) according to a preset mathematical relationship.

8. The intelligent fragrance management system with sensing, maintenance control, and authorization verification mechanisms as described in claim 1, wherein, The perception control engine (40) further dynamically determines the start and stop of odor output based on the perception threshold. The perception threshold includes an upper perception threshold and a lower perception threshold. When the estimated user adaptation level reaches a preset adaptation threshold, the odor output is stopped, and the odor output is restarted when the estimated perception intensity rises to more than 120% of the lower perception threshold.