Illini Rhythm Syndicate
UIUC's Rhythm Games Club - SDVX, CHUNITHM, maimai, Taiko, pop'n, Arcaea, Project SEKAI, etc.
Least addicted maimai players btw
Reel cover credit: https://x.com/tianbixia/status/2100789948966129855
GG but not really ez
Reel cover credit: https://www.pixiv.net/artworks/138202795
Why did they put more chart to my chart bro š„
Reel cover credit: _Dan_ball on X
Pandora parado # # # at home be like (no limit to the larp!!)
Cover art credit: https://www.pixiv.net/artworks/148186991
Worldās end Wrenally -final remix- [reborn] (for 7th Heaven)
Reel cover credit: https://www.pixiv.net/artworks/147697678
POV: The type of video that appears on your maimai feed WAY too often in the past week
Pwease consider following⦠itās not like I care or anything š³šš¤
Reel cover credit: å°ę² ć·ć«š° https://www.pixiv.net/artworks/139713018
Hello every-nyan of the Illini Rhythm Syndicate! Meet the amazing nyans of our club, the staff team! āØ
President: Jerry
Vice president: Mark
Secretary: Co
Membership director: Daniel
Event coordinator: Johnny
Outreach lead: Enya & Serge
Treasurer: Will
Technical lead: Andrew & Jeff
Come meet with them during events like freeplays and arcade trips nya!!! šš«¶š
08/24/2026
Quad day was a huge success, thanks for everyone who showed up at our booth and tried out our freeplay setups today! There are passionately cracked gamers as well as non-rhythm gamers who are curious enough to give it a shot. Shoutout to our partner Illinois Vocaloid Research Group (who does cool vocaloid stuff) and Eco Illini for being a chill neighbor!
Stay tuned for the general meeting on 8/31 5pm (at Everitt lab 2310) as we discuss goals for the semester for our projects and events!
A proportionalāintegralāderivative (PID) controller, or three-term controller, is a feedback-based control loop mechanism commonly used to manage machines and processes that require continuous control and automatic adjustment. It is typically used in industrial control systems and various other applications where constant control through modulation is necessary without human intervention. The PID controller automatically compares the desired target value (setpoint or SP) with the actual value of the system (process variable or PV). The difference between these two values is called the error value, denoted as e(t).
It then applies corrective actions automatically to bring the PV to the same value as the SP using three methods: The proportional (P) component responds to the current error value by producing an output that is directly proportional to the magnitude of the error. This provides immediate correction based on how far the system is from the desired setpoint. The integral (I) component, in turn, considers the cumulative sum of past errors to address any residual steady-state errors that persist over time, eliminating lingering discrepancies. Lastly, the derivative (D) component predicts future error trend by assessing the rate of change of the error, which helps to mitigate overshoot and enhance system stability, particularly when the system undergoes rapid changes. The PID output signal can directly control actuators through voltage, current, or other modulation methods, depending on the application. The PID controller reduces the likelihood of human error and improves automation.
Cover art credit: https://x.com/sena0708o_o/status/2089638466254716963?s=20
08/20/2026
As more and more new faces emerged on campus before the start of the semester, you might notice some of our posters lying around the entire campus! Try to spot all the 22 unique variants if you can, even though thatāll be a pretty tough challengeā¦
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