ABOUT THE SPEAKER
Cesar Harada - Inventor, environmentalist, educator
TED Senior Fellow Cesar Harada aims to harness the forces of nature as he invents innovative remedies for man-made problems like oil spills and radioactive leaks.

Why you should listen

Cesar Harada believes that ocean currents, the wind and other naturally occuring phenomenon can provide unique inspiration and novel solutions to mankind’s worst disasters, like oil spills and radioactive leaks. A French-Japanese inventor and TED senior fellow, he is the creator of Protei, a revolutionary sailing technology -- featuring a front rudder, flexible hull and open-soure hardware -- that allows for efficient clean up of both oil and plastics from the sea. Currently based in London, Harada recently traveled to Japan and is designing Protei to measure radioactivity along the country's coast.

The general coordinator of the future International Ocean Station, Harada teaches at Goldsmiths University London. A former project leader at MIT, he graduated form the Royal College of Arts Design Interactions in London and worked at the Southampton University Hydrodynamics laboratory on wave energy. Harada has also studied animantion, and his films and installations have been seen at festivals and events across the world, from the United States to Japan.

More profile about the speaker
Cesar Harada | Speaker | TED.com
TEDxSummit

Cesar Harada: A novel idea for cleaning up oil spills

Cesar Harada: 清理海洋漏油事故的新點子

Filmed:
891,401 views

當 TED 資深會員 Cesar Harada 聽說了 2011 年在墨西哥灣的 BP 漏油事故時,他辭掉夢想中的工作,搬到新奧爾良,試著研發一個更有效率的清除海上油污的方法。他設計出一種操作性強、又可彎曲的船,迅速而有效地清理污染。但最終,他沒有把這個發明轉換成一個僅僅用來獲利的商品,而是選擇開放設計,將知識分享他人。
- Inventor, environmentalist, educator
TED Senior Fellow Cesar Harada aims to harness the forces of nature as he invents innovative remedies for man-made problems like oil spills and radioactive leaks. Full bio

Double-click the English transcript below to play the video.

00:16
In the ocean海洋,
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在海洋中
00:17
what is the common共同 point
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什麼是
00:19
between之間 oil, plastic塑料 and radioactivity放射性?
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石油、塑膠、和放射線的共通點?
00:25
On the top最佳 line, this is the BPBP oil spill:
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在上面是 BP 漏油事件:
00:30
billions數十億 of barrels of oil gushing噴薄
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數十億桶的石油 (講者更正:數百萬桶)
00:32
in the Gulf海灣 of Mexico墨西哥.
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湧進墨西哥灣。
00:33
The middle中間 line is millions百萬 of tons of
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在中間是數百萬噸堆積
00:35
plastic塑料 debris廢墟 accumulating積累 in our ocean海洋,
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在海洋的塑膠碎片
00:38
and the third第三 line is radioactive放射性的 material材料
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在下面則是福島核電站
00:40
leaking洩漏 from Fukushima福島 nuclear power功率 plant
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洩漏的放射性物質
00:43
in the Pacific和平的 Ocean海洋.
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飄向太平洋。
00:44
Well, the three big problems問題 have in common共同
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這三大問題的共通點是
00:49
that they are man-made人造 problems問題
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它們都是人為的問題
00:51
but they are controlled受控 by natural自然 forces軍隊.
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但都由自然力量所控制
00:54
This should make us feel very, terribly可怕 awful可怕
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這應使我們感到非常、 非常可怕
00:58
as much as it should make us feel hopeful有希望,
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就像它應該讓我們感覺充滿希望
01:00
because if we have the power功率 to create創建 these problems問題,
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因為如果我們有能力製造這些問題,
01:03
we may可能 as well have the power功率
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我們應該也有能力
01:05
to remediate修復 these problems問題.
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來修復這些問題。
01:06
But what about natural自然 forces軍隊?
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但自然力量呢?
01:08
Well, that's exactly究竟 what I want to talk about today今天,
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嗯,這正是我今天想要談的,
01:11
is how we can use these natural自然 forces軍隊
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就是如何利用這些自然的力量
01:13
to remediate修復 these man-made人造 problems問題.
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來修復這些人為的問題。
01:19
When the BPBP oil spill happened發生,
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BP 漏油事件發生的時候,
01:20
I was working加工 at MITMIT, and I was in charge收費
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我在麻省理工學院工作,當時我負責
01:23
of developing發展 an oil spill-cleaning溢油清潔 technology技術.
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研發清洗石油漏油的技術。
01:25
And I had a chance機會 to go in the Gulf海灣 of Mexico墨西哥
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那時我有個機會去墨西哥海灣
01:28
and meet遇到 some fishermen漁民 and see
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和一些漁民會面,我也看到了
01:31
the terrible可怕 conditions條件 in which哪一個 they were working加工.
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他們惡劣的工作環境
01:33
More than 700 of these boats,
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超過 700 艘這樣的船,
01:36
which哪一個 are fishermen漁民 boats repurposed改變用途
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是以漁船改裝的
01:38
with oil absorbent吸水 in white白色
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配備白色的油漬吸附劑
01:40
and oil containment遏制 in orange橙子, were used,
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及橙色的攔油索
01:43
but they only collected three percent百分 of the oil on the surface表面,
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但是它們只能回收海洋表面 3% 的油,
01:46
and the health健康 of the cleaners清潔工
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而清潔工的健康
01:48
were very deeply affected受影響.
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卻受到很嚴重的影響。
01:50
I was working加工 on a very interesting有趣 technology技術
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我當時正在麻省理工學院研究一種
01:54
at MITMIT, but it was a very long-term長期 view視圖
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非常有趣的技術,但是就如何開發技術來說
01:56
of how to develop發展 technology技術,
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這是一個非常長期的計畫
01:57
and it was going to be a very expensive昂貴 technology技術,
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而且它會是非常昂貴的技術,
02:00
and also it would be patented專利.
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並還得取得專利。
02:02
So I wanted to develop發展 something that we could
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所以我想要發展的東西是一種我們可以
02:05
develop發展 very fast快速, that would be cheap低廉,
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發展得非常快、又很廉價的東西
02:08
and that would be open-source開源, so, because
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它最好是共享資源。這是因為
02:11
oil spills洩漏 are not only happening事件 in the Gulf海灣 of Mexico墨西哥,
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漏油不只發生在墨西哥灣,
02:13
and that would be using運用 renewable可再生 energy能源.
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而我們要使用可再生能源。
02:16
So I quit放棄 my dream夢想 job工作,
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所以我辭掉我夢想中的工作,
02:18
and I moved移動 to New Orleans奧爾良,
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而且我搬到新奧爾良
02:20
and I kept不停 on studying研究 how the oil spill was happening事件.
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我在那裡持續學習漏油事故如何發生的。
02:23
Currently目前, what they were doing is
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目前,他們在做的是
02:25
that they were using運用 these small fishing釣魚 boats,
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他們用這些小漁船來清理,
02:26
and they were cleaning清潔的 clean清潔 lines in an ocean海洋 of dirt污垢.
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但效果最多不過是在汪洋的油汙裡洗出乾淨的線條罷了。
02:30
If you're using運用 the exact精確 same相同 amount of surface表面
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如果你使用相同表面積的
02:33
of oil absorbent吸水, but you're just paying付款 attention注意
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油漬吸附劑,你會注意到
02:35
to natural自然 patterns模式, and if you're going up the winds,
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大自然的規律,如果你從下風往上風方向走,
02:38
you can collect蒐集 a lot more material材料.
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就可以收集更多的油汙。
02:39
If you're multiplying乘以 the rig操縱,
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如果你能裝上許多攔油索,
02:42
so you multiply how many許多 layers of absorbent吸水
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再配合撒上多層的油漬吸附劑
02:44
you're using運用, you can collect蒐集 a lot more.
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就可以收集更多油汙。
02:46
But it's extremely非常 difficult to move移動 oil absorbent吸水
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但是你很難逆著風、 逆著表面洋流和海浪
02:49
against反對 the winds, the surface表面 currents電流 and the waves波浪.
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來拖動油漬吸附劑
02:52
These are enormous巨大 forces軍隊.
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這些都是巨大的力量。
02:54
So the very simple簡單 idea理念 was to use the ancient technique技術
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所以很簡單的想法是,利用古代的
02:57
of sailing帆船 and tacking黏合 of the wind
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航海技術,看風向
02:59
to capture捕獲 or intercept截距 the oil
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來收集或攔截
03:02
that is drifting漂流 down the wind.
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順風漂流下來的油污。
03:03
So this didn't require要求 any invention發明.
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因此,這並不需要任何發明。
03:07
We just took a simple簡單 sailing帆船 boat
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我們只是用了簡單的帆船
03:08
and we tried試著 to pull something long and heavy,
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我們試著拉又長又重的東西
03:10
but as we tacked上漲 back and forth向前,
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但,當我們來回拖動船體
03:12
what we lost丟失 was two things:
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我們失去兩個東西:
03:14
we were losing失去 pulling power功率 and direction方向.
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我們失去拖動力和方向。
03:17
And so, I thought, what about if we just take the rudder
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這樣,我就想,如果我們把舵
03:21
from the back of the boat to the front面前,
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從船尾移到船頭
03:23
would we have better control控制?
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我們能更好地控制它嗎?
03:25
So I built內置 this small sailing帆船 robot機器人
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所以我建了這個小帆船機器人
03:27
with the rudder at the front面前,
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舵在船頭
03:28
and I was trying to pull something very long and heavy,
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然後嘗試拉又長又重的東西,
03:30
so that's a four-meter-long四米長 object目的 just to pull,
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這就是四米長的物件,只為了實驗拖東西
03:34
and I was surprised詫異 with just a 14-centimeter-厘米 rudder,
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然後我很驚訝我僅以 14 公分的舵,
03:37
I could control控制 four meters of absorbent吸水.
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就可以控制長達四米(公尺)的油漬吸附劑。
03:39
Then I was so happy快樂 that I kept不停 playing播放 with the robot機器人,
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我很高興,所以我一直在試這個機器人,
03:43
and so you see the robot機器人 has
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因此,你看到這個機器人有
03:45
a front面前 rudder here.
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前方向舵,
03:47
Normally一般 it's at the back.
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通常這舵是在後面。
03:48
And, playing播放, I realized實現 that the maneuverability機動性
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我一直試,意識到它的操縱能力
03:52
of this was really amazing驚人,
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真的很令人驚訝
03:53
and I could avoid避免 an obstacle障礙 at the very last second第二,
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我可以在最後一秒閃避障礙物
03:55
more maneuverable機動性 than a normal正常 boat.
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比一般的船更具機動性。
03:57
Then I started開始 publishing出版 online線上, and
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然後我開始在網上發表結果
03:59
some friends朋友 from Korea韓國, they started開始 being存在
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來自韓國的一些朋友,他們開始
04:02
interested有興趣 in this, and we made製作 a boat
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在這領域產生興趣,然後我們造了一艘船
04:04
which哪一個 has a front面前 rudder and a back rudder,
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有前舵也有後舵
04:06
so we started開始 interacting互動 with this,
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我們開始做更多的實驗
04:08
and it was slightly better,
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效果的確是比較好一點,
04:10
although雖然 it was very small and a bit off balance平衡,
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雖然它很小,有點不容易保持平衡,
04:12
but then we thought,
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但後來我們覺得,
04:13
what if we have more than two points of control控制?
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如果我們有兩個以上的控制點會不會更好呢?
04:15
What if the entire整個 boat becomes a point of control控制?
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那,要不整艘船都能控制方向?
04:17
What if the entire整個 boat changes變化 shape形狀?
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或者,改變整艘船的形狀?
04:19
So — (Applause掌聲)
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所以 — — (掌聲)
04:22
Thank you very much. (Applause掌聲)
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謝謝。(掌聲)
04:23
And so that's the beginning開始 of ProteiProtei,
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這就是最初的 Protei
04:26
and that's the first boat in history歷史
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這是史上第一艘
04:28
that completely全然 changed the shape形狀 of the hull船殼
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能完全改變船形的船
04:29
in order訂購 to control控制 it,
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目的是為了控制它。
04:30
and the properties性能 of sailing帆船 that we get
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帆船的性能
04:33
are very superior優越 compared相比 to a normal正常 boat.
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和普通船相比是十分優越的
04:36
When we're turning車削, we have the feeling感覺 of surfing衝浪,
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當我們轉向時,我們有衝浪的感覺
04:39
and the way it's going up-wind上風向, it's very efficient高效.
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它面臨上風時非常有效率。
04:43
This is low speed速度, low wind speed速度,
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這是低速度、 低風速度,
04:46
and the maneuverability機動性 is very increased增加,
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機動性進步很多
04:48
and here I'm going to do a small jibe嘲笑,
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在這裡我要做微幅的轉舵,
04:50
and look at the position位置 of the sail.
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看看帆的位置,
04:52
What's happening事件 is that, because the boat changes變化 shape形狀,
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現在發生的是,因為船更改了形狀,
04:56
the position位置 of the front面前 sail and the main主要 sail
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前帆和主帆的位置
04:58
are different不同 to the wind.
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和風向不同,
04:59
We're catching wind from both sides雙方.
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我們要從兩側乘風,
05:01
And this is exactly究竟 what we're looking [for]
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這也正是我們在尋找的東西
05:03
if we want to pull something long and heavy.
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如果我們想要拖又長又沉重的東西。
05:05
We don't want to lose失去 pulling power功率, nor也不 direction方向.
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我們不想失去拖曳動力,及失去方向。
05:08
So, I wanted to know if this was possible可能
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所以,我想知道是否這是可能的
05:10
to put this at an industrial產業 level水平,
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把這個成品產業化
05:12
so we made製作 a large boat with a large sail,
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所以我們做了大風帆的大船
05:14
and with a very light hull船殼, inflatable充氣,
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與很輕的船身,充氣時,
05:17
very small footprint腳印,
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占地面積非常小,
05:19
so we have a very big size尺寸 and power功率 ratio.
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所以,我們有一個很大的體積和功率比。
05:21
After this, we wanted to see if we could
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這之後,我們想看看我們能否
05:25
implement實行 this and automate自動化 the system系統,
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實現它,並使系統自動化,
05:27
so we used the same相同 system系統 but we added添加
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所以我們使用相同的系統,但我們添加了
05:29
a structure結構體 to it so we could activate啟用 the machine.
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一種結構,以便我們可以啟動這台機器。
05:31
So, we used the same相同 bladder-inflated氣囊充氣 system系統,
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我們使用同一個氣囊充氣系統
05:34
and we took it for testing測試.
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測試它
05:36
So this is happening事件 in the Netherlands荷蘭.
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這是在荷蘭
05:39
We tried試著 in the water without any skin皮膚 or ballast壓載
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我們試著在沒有任何外殼或壓艙物的情況下放入水中
05:41
just to see how it works作品.
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我想看看它是如何工作,
05:44
And then we mounted安裝 a camera相機 for controlling控制 it,
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然後我們接上相機控制它,
05:46
but quickly很快 we saw that we would need
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但很快,我們知道我們需要
05:49
a lot more weight重量 at the bottom底部,
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在底部,置放更多重量
05:51
so we had to take it back to the lab實驗室,
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所以我們把它帶回實驗室,
05:53
and then we built內置 a skin皮膚 around it,
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在其外圍覆蓋一層外皮
05:55
we put batteries電池, remote遠程 controllers控制器, and then
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我們裝上電池、 遠端控制器,
05:58
we put it in the water and then we
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接著把它放在水裡。然後我們
06:00
let it go in the water and see how well it would work,
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任它往水裡去,看看它會如何運作,
06:03
so let some rope out, and hope希望 it's going to work,
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我們拉一些繩子出來,希望它運作順利,
06:06
and it worked工作 okay, but we still have a long way.
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最終它運作良好了,但我們仍然有很長的路要走。
06:10
Our small prototype原型 has given特定 us good insight眼光
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我們從模型中得到想法
06:12
that it's working加工 very well,
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它運作得不錯
06:13
but we still need to work a lot more on this.
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但我們仍需改進
06:16
So what we are doing is an accelerated加速 evolution演化
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所以我們現在正在做的,是加速進化
06:20
of sailing帆船 technology技術.
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航行技術。
06:21
We went from a back rudder to a front面前 rudder
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我們從一開始的背舵,改為前舵
06:23
to two rudders to multiple rudders
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之後從雙舵變成多舵
06:25
to the whole整個 boat changing改變 shape形狀,
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到後來整條船都可以改變形狀
06:27
and the more we are moving移動 forward前鋒,
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當我們愈是持續地改進它,
06:29
and the more the design設計 looks容貌 simple簡單 and cute可愛. (Laughter笑聲)
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它的設計看起來就愈來愈簡單、可愛了。(笑聲)
06:35
But I wanted to show顯示 you a fish because --
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我想向各位展示一條魚,因為
06:37
In fact事實, it's very different不同 from a fish.
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事實上,它和一條魚非常不同。
06:40
A fish will move移動 because -- by changing改變 like this,
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一般說來,一條魚會移動,是因為牠像這樣改變,
06:45
but our boat is propelled推進的 by the wind still,
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但我們的船是由風所推動,
06:48
and the hull船殼 controls控制 the trajectory彈道.
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而它的航行方向是由船身控制,
06:50
So I brought to you for the first time on the TEDTED stage階段
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這是我第一次把它呈現在 TED 講臺上,
06:54
ProteiProtei Number Eight. It's not the last one,
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Protei 8 號。它不是最後一款設計,
06:56
but it's a good one for making製造 demos演示.
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但它是一個好的展示品。
06:58
So the first thing as I show顯示 you in the video視頻 is
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所以,我在影片中展示的第一件事是
07:01
that we may可能 be able能夠 to control控制 the trajectory彈道
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我們或許可以更好地控制
07:05
of a sailing帆船 boat better,
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帆船的航向,
07:06
or we may可能 be able能夠 to never be in irons鐵桿,
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或,我們也可以永遠避免處於頂風處
07:09
so never facing面對 the wind,
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所以永遠不會面風,
07:11
we always can catch抓住 the wind from both sides雙方.
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我們總能趕上兩側風。
07:13
But new properties性能 of a sailing帆船 boat.
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但新的帆船的特徵是這樣的
07:15
So if you're looking at the boat from this side,
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如果你從船的這一邊看過去,
07:20
this might威力 remind提醒 you of an airplane飛機 profile輪廓.
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這可能會讓你想起飛機剖面,
07:22
An airplane飛機, when you're moving移動 in this direction方向,
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在飛機上,當你正在朝這個方向前進時
07:24
starts啟動 to lift電梯, and that's how it takes off.
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它開始上升,這是它起飛的樣子。
07:26
Now, if you're taking服用 the same相同 system系統,
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現在,如果你把相同的系統,
07:29
and you're putting vertical垂直, you're bending彎曲,
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垂直放,彎曲它
07:31
and if you're moving移動 this way forward前鋒,
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如果通過這種方式向前移動,
07:33
your instinct直覺 will tell you that you might威力 go this way,
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你的直覺會告訴你,你可能會走這條路,
07:36
but if you're moving移動 fast快速 enough足夠,
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但,如果你移動地夠快,
07:38
you might威力 create創建 what we call lateral lift電梯,
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你可能會產生一個我們稱之為側平舉的現象,
07:40
so we could get further進一步 or closer接近 to the wind.
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藉此,我們可以更進一步、或者更接近風。
07:43
Other property屬性 is this:
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其他特徵如下所示:
07:46
A normal正常 sailing帆船 boat has a centerboardcenterboard here
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正常的帆船在這裡有個活動船板
07:49
and a rudder at the back,
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另外在後面有個方向舵,
07:51
and these two things are what creates創建 most
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這兩個機件產生了大部分
07:53
resistance抵抗性 and turbulence動亂 behind背後 the boat,
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在船後的阻力和亂流,
07:56
but because this doesn't have either
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但由於這沒有
07:58
a centerboardcenterboard or a rudder,
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活動船板或船舵,
08:00
we hope希望 that if we keep working加工 on this hull船殼 design設計
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我們希望,如果我們繼續在船體的設計上著力
08:03
we can improve提高 and have less resistance抵抗性.
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我們可以改善,使阻力變小;
08:05
The other thing is, most boats, when they reach達到
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另外一點是,大多數的船隻,當它們達到
08:08
a certain某些 speed速度, and they are going on waves波浪,
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某一速度時,他們會在浪尖上
08:10
they start開始 to hit擊中 and slap拍擊 on the surface表面 of the water,
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開始衝擊水面
08:12
and a lot of the energy能源 moving移動 forward前鋒 is lost丟失.
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並失去很多向前移動的能量,
08:16
But if we're going with the flow,
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但,如果我們要隨著波流前進,
08:18
if we pay工資 attention注意 to natural自然 patterns模式
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如果我們仔細端詳自然的規律
08:20
instead代替 of trying to be strong強大,
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而不是嘗試要變得壯碩,
08:21
but if you're going with the flow, we may可能 absorb吸收
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但如果你打算順著波流走,我們會吸收
08:24
a lot of environmental環境的 noises噪音, so the wave energy能源,
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很多的環境噪音與波能量,
08:27
to actually其實 save保存 some energy能源 to move移動 forward前鋒.
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以保存一些能量向前移動。
08:30
So we may可能 have developed發達 the technology技術
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我們會開發技術
08:34
which哪一個 is very efficient高效 for pulling something long and heavy,
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開發一種有效拉動又長又重東西的技術
08:37
but the idea理念 is, what is the purpose目的 of technology技術
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然而,這個想法是,到底科技的目的是什麼?
08:41
if it doesn't reach達到 the right hands?
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如果它不能到達正確的方式呢?
08:43
Normal正常 technology技術 or innovation革新 happens發生 like this:
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正常的技術或創新是像這樣發生的:
08:46
Somebody has an interesting有趣 idea理念,
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有人有一個有趣的想法,
08:49
some other scientist科學家 or engineer工程師,
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一些其他的科學家或工程師,
08:51
they take it to the next下一個 level水平, they make a theory理論 about it
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他們進階研究,研發理論,
08:53
and maybe they patent專利 it,
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也許他們申請到專利,
08:54
and then some industry行業 will make a contract合同
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然後一些企業會提供合約
08:57
of exclusivity排他性 to manufacture製造 and sell it,
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用以獨家製造、銷售,
09:00
and then, eventually終於, a buyer買方 will buy購買 it,
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然後,最終,有買主會買它,
09:02
and we hope希望 that they are going to use [it] for a good purpose目的.
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而我們希望他們有良好的用途。
09:05
What we really want is that this innovation革新 happens發生
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我們真正想要的是,這種創新會持續不斷地發生,
09:09
continuously一直. The inventor發明者 and engineers工程師
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發明家、工程師、
09:11
and also the manufacturers製造商 and everybody每個人
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製造商、和所有人
09:13
works作品 at the same相同 time, but this would be sterile無菌
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在同一時間工作,但如果這發生在平行和非交叉的過程中的話,
09:15
if this was happening事件 in a parallel平行 and uncrossed非交叉 process處理.
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可能會產生不出什麽效果。
09:19
What you really want is not a sequential順序,
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你真的想要的,不是一種時序性的
09:21
not parallel平行 development發展.
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也不是平行發展,
09:22
You want to have a network網絡 of innovation革新.
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你想要有創新的網路。
09:24
You want everybody每個人, like we're doing now,
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你想要每個人都像我們現在正在做的:
09:26
to work at the same相同 time, and that can only happen發生
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在同一時間工作,而創新只會發生於
09:29
if these people all together一起 decide決定 to share分享 the information信息,
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所有這些人一起決定分享資訊,
09:32
and that's exactly究竟 what open打開 hardware硬件 is about.
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而這也正符合開放硬體的精神。
09:35
It's to replace更換 competition競爭 by collaboration合作.
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它是以合作代替競爭,
09:39
It's to transform轉變 any new product產品 into a new market市場.
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它將任何一個新產品轉化為一個新市場。
09:43
So what is open打開 hardware硬件?
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那麼什麼是開放硬體?
09:45
Essentially實質上, open打開 hardware硬件 is a license執照.
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本質上,開放硬體是一個許可證。
09:47
It's just an intellectual知識分子 property屬性 setup建立.
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它只是一個智慧財產權的設置。
09:49
It means手段 that everybody每個人 is free自由 to use,
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它意謂著每個人都可以免費使用、
09:52
modify修改 and distribute分發, and in exchange交換
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修改、分發、和交換。
09:56
we only ask for two things:
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我們只要求兩件事情:
09:57
The name名稱 is credited -- the name名稱 of the project項目 --
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標示名稱。也就是專案的名稱;
09:59
and also the people who make improvement起色,
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並標示那些對其貢獻的人們,
10:02
they share分享 back with the community社區.
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他們回來與社區分享。
10:03
So it's a very simple簡單 condition條件.
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因此,它是一個非常簡單的條件。
10:04
And I started開始 this project項目 alone單獨 in a garage車庫 in New Orleans奧爾良,
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我的這個專案是在新奧爾良的車庫裡開始的,
10:08
but quickly很快 after I wanted to publish發布 and share分享
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但很快地在我發佈和共用
10:10
this information信息, so I made製作 a KickstarterKickstarter的,
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這些資訊之後,所以我做了 Kickstarter,
10:12
which哪一個 is a crowd-fundraising人群籌款 platform平台,
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這是一個向人們籌款的平臺,
10:14
and in about one month we fundraisedfundraised 30,000 dollars美元.
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大約在約一個月內,我們籌到三萬美元的捐助。
10:17
With this money, I hired僱用 a team球隊 of young年輕 engineers工程師
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用這筆錢,我雇了一個年輕的工程師團隊
10:20
from all over the world世界, and we rented a factory
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他們來自世界各地,我們也在荷蘭的鹿特丹
10:23
in Rotterdam鹿特丹 in the Netherlands荷蘭.
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租了一家工廠。
10:24
We were peer-learning同行學習, we were engineering工程,
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我們同行之間彼此學習,我們做工程、
10:27
we were making製造 things, prototyping原型,
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我們發明許多東西、建立模型,
10:31
but most importantly重要的 we were trying our prototypes原型
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但最重要的是,我們盡可能頻繁地
10:33
in the water as often經常 as possible可能,
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在水中測試我們的模型,
10:35
to fail失敗 as quickly很快 as possible可能, to learn學習 from.
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爲了儘速地從失敗中汲取教訓。
10:38
This is a proud驕傲 member會員 of ProteiProtei from Korea韓國,
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這是我們來自韓國的一個令人驕傲的成員,
10:40
and on the right side, this is a multiple-masts多桅
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在右側,這就是多層桅杆,
10:43
design設計 proposed建議 by a team球隊 in Mexico墨西哥.
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這是由一個在墨西哥的小組所設計的提案,
10:45
This idea理念 really appealed上訴 to Gabriella加布里埃拉 Levine萊文
254
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這種想法正合 Gabriella Levine 的意思,
10:48
in New York紐約, and so she decided決定 to prototype原型
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所以她決定在紐約建立模型
10:50
this idea理念 that she saw, and she documented記錄
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她看到這個想法,
10:53
every一切 step of the process處理,
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並記錄每個步驟的過程,
10:54
and she published發表 it on InstructablesInstructables,
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並且她將它刊載於 Instructables。
10:57
which哪一個 is a website網站 for sharing分享 inventions發明.
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Instructables 是一個網站,提供分享發明
10:59
Less than one week after,
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不到一星期之後,
11:01
this is a team球隊 in Eindhoven埃因霍溫, it's a school學校 of engineering工程.
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這是一個在荷蘭 Eindhoven 的團隊,這是一所工程學校。
11:05
They made製作 it, but they eventually終於 published發表
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他們創造它,
11:07
a simplified design設計.
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但最終發表一個簡化的設計。
11:08
They also made製作 it into an Instructable造說明,
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他們也把它放上 Instructable 網站
11:10
and in less than one week, they had
265
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不到一星期後
11:12
almost幾乎 10,000 views意見, and they got many許多 new friends朋友.
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他們收到幾乎 10,000 個意見,也認識了很多新朋友。
11:15
We're working加工 on also simpler簡單 technology技術,
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我們現在正在研究較為簡單的技術,
11:17
not that complex複雜, with younger更年輕 people
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沒那麼複雜,和較年輕的人、
11:19
and also older舊的 people,
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以及較年長的人工作
11:21
like this dinosaur恐龍 is from Mexico墨西哥. (Laughter笑聲)
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就像這恐龍一樣是從墨西哥來的。(笑聲)
11:24
So ProteiProtei is now an international國際 network網絡
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所以 Protei 現在是一個以創新為主的國際網路
11:27
of innovation革新 for selling銷售 technology技術
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銷售科技技術
11:30
using運用 this shape-shifting形狀轉移 hull船殼.
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使用這種形體轉換的船身。
11:32
And what puts看跌期權 us together一起 is that we have a common共同,
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我們在一起的原因是: 我們有一個共同的
11:36
at least最小, global全球 understanding理解
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至少,全球的認知;這個認知是指
11:38
of what the word "business商業" is, or what it should be.
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對於「商業」是什麽、或「商業」應當是什麽的認知。
11:42
This is how most work today今天.
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這是大多數今天工作的方式。
11:44
Business商業 as usual通常 is saying, what's most important重要
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2374
通常在商業活動中,最重要的是
11:46
is to make lots of profit利潤, and you'll你會 be using運用
279
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2239
獲得最大的利潤,
11:48
technology技術 for that, and people will be your work force,
280
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2825
並且為此使用科技,而人們成為你的勞工,
11:51
instrumentalized工具化,
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被你雇傭
11:52
and environment環境 is usually平時 the last priority優先.
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然後,環境通常是最後的考量。
11:55
It will be just a way to, say, greenwash漂綠 your audience聽眾
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它只是用漂綠的方式說服聽眾
11:59
and, say, increase增加 your price價錢 tag標籤.
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而且還可能為此抬高價格。
12:01
What we're trying to do, or what we believe,
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而我們試圖做的、或我們所相信的是
12:04
because this is how we believe the world世界 really works作品,
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我們相信世界運作的道理在於
12:06
is that without the environment環境 you have nothing.
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沒有環境,你什麽都得不到。
12:08
We have the people so we need to protect保護 each other, yes,
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我們有人,所以我們需要保護對方,
12:11
and we're a technology技術 company公司,
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是的,我們是一家科技公司,
12:13
and profit利潤 is necessary必要 to make this happen發生. (Applause掌聲)
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利潤由此而生。(掌聲)
12:18
Thank you very much. (Applause掌聲)
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謝謝。(掌聲)
12:22
If we have the courage勇氣 to understand理解 or accept接受
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如果我們有勇氣去理解或接受
12:26
that this actually其實 how the world世界 really works作品,
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這世界的實際運作,
12:28
and this is the order訂購 of priority優先 that we need to choose選擇,
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而這就是我們的優先選擇次序,
12:31
then it makes品牌 obvious明顯 why we need
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於是,為什麼我們需要選擇開放性硬體
12:33
to choose選擇 open打開 hardware硬件 for developing發展 environmental環境的
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以作為發展環境科技的原因,便顯而易見了:
12:35
technology技術, because we need to share分享 information信息.
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因為我們需要分享資訊。
12:37
What's next下一個 for us?
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我們的下一步是什麼?
12:39
So, this small machine that you've seen看到,
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這個你剛看到的小機器,
12:42
we're hoping希望 to make small toys玩具 like
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我們希望能做出像這樣的小玩具:
12:44
one-meter一米 remote遠程 control控制 ProteiProtei that you can upgrade升級 --
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一公尺遠端控制的 Protei,你可以升級它
12:47
so replace更換 the remote遠程 control控制 parts部分 by Androids機器人,
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將遠端控制的部份更改為 Androids
12:50
so the mobile移動 phone電話, and ArduinoArduino的 micro-controller微控制器,
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這樣,你就可以透過
12:54
so you could be controlling控制 this
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行動電話和 Arduino 微控制器控制它
12:55
from your mobile移動 phone電話, your tablet片劑.
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從你的行動電話、平板電腦控制它
12:57
Then what we want to do is create創建 six-meter六米 versions版本
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我們想要做的是打造六公尺的版本
13:00
so we can test測試 the maximum最大值 performance性能 of these machines,
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所以我們可以測試這些機器的最大性能,
13:03
so we can go at very, very high speed速度.
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這樣一來,我們上調到非常高的速度。
13:04
So imagine想像 yourself你自己.
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想像一下你自己
13:06
You are laying鋪設 down in a flexible靈活 torpedo魚雷,
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處於一枚可變換方向的魚雷
13:09
sailing帆船 at high speed速度,
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在高速中移動
13:10
controlling控制 the shape形狀 of the hull船殼 with your legs
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你用腿控制船身
13:12
and controlling控制 the sail with your arms武器.
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用手臂控制船帆。
13:15
So that's what we're looking for developing發展. (Applause掌聲)
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這就是我們正在開發的。(掌聲)
13:19
And we replace更換 the human人的 being存在 --
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我們取代人工,
13:21
to go, for example, for measuring測量 radioactivity放射性,
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比如說,用這個產品測量輻射,
13:23
you don't want a human人的 to be sailing帆船 those robots機器人 --
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你並不想要用人直接操控那些機器
13:26
with batteries電池, motors馬達, micro-controllers微控制器 and sensors傳感器.
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而是用電池、 發動機、 微控制器、和感應器。
13:29
This is what our teammates隊友, we dream夢想 of at night.
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這是我們隊友每夜的夢想。
13:33
We hope希望 that we can sometime某時 clean清潔 up oil spills洩漏,
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我們希望我們可以找個時間清理漏油、
13:35
or we can gather收集 or collect蒐集 plastic塑料 in the ocean海洋,
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或,我們可以收集海洋中的塑膠
13:39
or we can have swarms成群 of our machines
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或,我們可以讓我們大量的機器
13:43
controlled受控 by multi-player多玩家 video視頻 game遊戲 engines引擎
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通過影片遊戲引擎來控制,
13:46
to control控制 many許多 of these machines,
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通過控制這大批機器
13:48
to monitor監控 coral珊瑚 reefs珊瑚礁
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來監控珊瑚礁
13:50
or to monitor監控 fisheries漁業.
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或監控漁業資源。
13:52
Our hope希望 is that we can use open打開 hardware硬件 technology技術
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我們的希望是,我們可以使用開放硬體科技
13:56
to better understand理解 and protect保護 our oceans海洋.
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使我們更好地瞭解、保護我們的海洋。
14:00
Thank you very much. (Applause掌聲)
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謝謝。(掌聲)
14:04
(Applause掌聲)
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(掌聲)
Translated by Geoff Chen
Reviewed by Regina Chu

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ABOUT THE SPEAKER
Cesar Harada - Inventor, environmentalist, educator
TED Senior Fellow Cesar Harada aims to harness the forces of nature as he invents innovative remedies for man-made problems like oil spills and radioactive leaks.

Why you should listen

Cesar Harada believes that ocean currents, the wind and other naturally occuring phenomenon can provide unique inspiration and novel solutions to mankind’s worst disasters, like oil spills and radioactive leaks. A French-Japanese inventor and TED senior fellow, he is the creator of Protei, a revolutionary sailing technology -- featuring a front rudder, flexible hull and open-soure hardware -- that allows for efficient clean up of both oil and plastics from the sea. Currently based in London, Harada recently traveled to Japan and is designing Protei to measure radioactivity along the country's coast.

The general coordinator of the future International Ocean Station, Harada teaches at Goldsmiths University London. A former project leader at MIT, he graduated form the Royal College of Arts Design Interactions in London and worked at the Southampton University Hydrodynamics laboratory on wave energy. Harada has also studied animantion, and his films and installations have been seen at festivals and events across the world, from the United States to Japan.

More profile about the speaker
Cesar Harada | Speaker | TED.com

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